US20050228224A1 - Endoscope therapeutic device - Google Patents
Endoscope therapeutic device Download PDFInfo
- Publication number
- US20050228224A1 US20050228224A1 US11/104,883 US10488305A US2005228224A1 US 20050228224 A1 US20050228224 A1 US 20050228224A1 US 10488305 A US10488305 A US 10488305A US 2005228224 A1 US2005228224 A1 US 2005228224A1
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- US
- United States
- Prior art keywords
- introduction guide
- guide tube
- treatment tool
- endoscope
- tube
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
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Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/34—Trocars; Puncturing needles
- A61B17/3417—Details of tips or shafts, e.g. grooves, expandable, bendable; Multiple coaxial sliding cannulas, e.g. for dilating
- A61B17/3421—Cannulas
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/00064—Constructional details of the endoscope body
- A61B1/00071—Insertion part of the endoscope body
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/00064—Constructional details of the endoscope body
- A61B1/00071—Insertion part of the endoscope body
- A61B1/0008—Insertion part of the endoscope body characterised by distal tip features
- A61B1/00087—Tools
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/00131—Accessories for endoscopes
- A61B1/00133—Drive units for endoscopic tools inserted through or with the endoscope
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/00131—Accessories for endoscopes
- A61B1/00135—Oversleeves mounted on the endoscope prior to insertion
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/012—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor characterised by internal passages or accessories therefor
- A61B1/018—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor characterised by internal passages or accessories therefor for receiving instruments
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B2017/00367—Details of actuation of instruments, e.g. relations between pushing buttons, or the like, and activation of the tool, working tip, or the like
- A61B2017/00398—Details of actuation of instruments, e.g. relations between pushing buttons, or the like, and activation of the tool, working tip, or the like using powered actuators, e.g. stepper motors, solenoids
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/28—Surgical forceps
- A61B17/29—Forceps for use in minimally invasive surgery
- A61B2017/2901—Details of shaft
- A61B2017/2905—Details of shaft flexible
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/28—Surgical forceps
- A61B17/29—Forceps for use in minimally invasive surgery
- A61B2017/2901—Details of shaft
- A61B2017/2906—Multiple forceps
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/28—Surgical forceps
- A61B17/29—Forceps for use in minimally invasive surgery
- A61B2017/2926—Details of heads or jaws
- A61B2017/2927—Details of heads or jaws the angular position of the head being adjustable with respect to the shaft
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/28—Surgical forceps
- A61B17/29—Forceps for use in minimally invasive surgery
- A61B2017/2926—Details of heads or jaws
- A61B2017/2927—Details of heads or jaws the angular position of the head being adjustable with respect to the shaft
- A61B2017/2929—Details of heads or jaws the angular position of the head being adjustable with respect to the shaft with a head rotatable about the longitudinal axis of the shaft
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/34—Trocars; Puncturing needles
- A61B17/3417—Details of tips or shafts, e.g. grooves, expandable, bendable; Multiple coaxial sliding cannulas, e.g. for dilating
- A61B17/3421—Cannulas
- A61B2017/3445—Cannulas used as instrument channel for multiple instruments
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods, e.g. tourniquets
- A61B17/34—Trocars; Puncturing needles
- A61B2017/347—Locking means, e.g. for locking instrument in cannula
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B34/00—Computer-aided surgery; Manipulators or robots specially adapted for use in surgery
- A61B34/70—Manipulators specially adapted for use in surgery
Definitions
- the present invention relates to an endoscope therapeutic device for performing treatment under observation via an endoscope by introducing a treatment tool through an introduction guide tube with a bending function into a body cavity, and an introduction guide tube thereof.
- An endoscope therapeutic device for performing treatment using a treatment tool under observation via an endoscope by introducing the treatment tool through a soft introduction guide tube into a body cavity is known in the related art.
- the introduction guide tube used in the endoscope therapeutic device of this type is referred also as a “channel tube”.
- an introduction guide tube of this type an introduction guide tube with a bending function, in which a bending portion is provided in the vicinity of the distal end of the tube, and the bending portion is capable of being bent by a proximal final operating element is proposed (See JP-A-2000-33071).
- This endoscope therapeutic device is configured in such a manner that treatment tools are guided via a plurality of introduction guide tubes with a bending function, respectively, into a body cavity, and the directions of the treatment tools in the body cavity are adjusted by bending the bending portions of the introduction guide tubes.
- An endoscope therapeutic device includes a plurality of introduction guide tubes for introducing treatment tools into a body cavity, wherein the plurality of introduction guide tubes are joined to each other at portions proximal to the bending portions thereof.
- a joint portion is placed in a more proximal position than the distal-most bending portion.
- the form of joint may be such that a part of the insertion portion that is located on a more proximal side than the bending portion of the introduction guide tube is integrally joined with other introduction guide tubes. In this case, a stable connection is achieved. It is also possible to join the introduction guide tubes with a joint tool. In this case, since the introduction guide tubes can be replaced, it is applicable to various embodiments. It is also possible to provide a connecting function to an over tube through which the introduction guide tubes are inserted.
- the positions of the endoscope, a suction tube, and the like in the body cavity are also stabilized by being joined as a matter of course.
- an operating mechanism for operating the distal end of the treatment tool to be inserted therethrough may preferably be provided at the distal end of the introduction guide tube. Since the introduction guide tube is provided with a function to operate the treatment tool in addition to the function to receive the treatment tool inserted therethrough, operability is improved. Since the treating portion and the operating portion are located close to each other, a delicate operation can be performed.
- the operator can operate the treatment tools inserted through the guide tubes without unlinking his/her hand from the guide tube by operating on the proximal side of the guide tube, and hence good operability is achieved.
- the operation of the treatment tool includes, for example, the fore-and-aft movement or the rotation of the treatment tool.
- FIG. 1A is a perspective view of an endoscope therapeutic device according to a first embodiment of the present invention
- FIG. 1B is a perspective view of a distal portion of an endoscope for use with the endoscope therapeutic device of FIG. 1A ;
- FIG. 2 is a lateral cross-sectional view of a joint portion in the endoscope therapeutic device of FIG. 1A as taken along line 2 - 2 thereof;
- FIG. 3 is an explanatory drawing showing the state of usage of the endoscope therapeutic device according to the first embodiment
- FIG. 4 is a perspective view showing the joint in an enlarged manner in a state in which a treatment tool introduction guide tube unit is built in the endoscope in the endoscope therapeutic device according to the first embodiment;
- FIG. 5 is a perspective view showing the joint for assembling the treatment tool introduction guide tube unit to the endoscope in the endoscope therapeutic device according to the first embodiment
- FIG. 6 is a perspective view showing the introduction guide tube in the treatment tool introduction guide tube unit of the endoscope therapeutic device according to the first embodiment
- FIG. 7 is a cross-sectional view of a distal end portion of the introduction guide tube in the treatment tool introduction guide tube unit of the endoscope therapeutic device according to the first embodiment
- FIG. 8 is a partial perspective view of the endoscope therapeutic device according to a second embodiment of the present invention.
- FIG. 9 is a perspective view showing an over tube of the endoscope therapeutic device according to the second embodiment.
- FIG. 10 is a cross-sectional view of a fixed portion of the endoscope therapeutic device of FIG. 8 as taken along line 10 - 10 thereof;
- FIG. 11 is an explanatory drawing showing the state of usage of the endoscope therapeutic device according to the second embodiment
- FIG. 12 is an exploded perspective view of the endoscope therapeutic device according to a third embodiment of the present invention.
- FIG. 13 is an explanatory drawing showing the state of usage of the endoscope therapeutic device according to the third embodiment.
- FIG. 14 is a perspective view showing a distal end of the endoscope therapeutic device according to a fourth embodiment of the present invention.
- FIG. 15 is a perspective view showing the distal end of the endoscope therapeutic device according to a fifth embodiment of the present invention.
- FIG. 16 is a perspective view showing a final operating element of the introduction guide tube in the endoscope therapeutic device according to a sixth embodiment of the present invention.
- FIG. 17 is a plan view of the final operating element of the introduction guide tube in the endoscope therapeutic device according to the sixth embodiment.
- FIG. 18A and FIG. 18B are vertical cross-sectional views of the distal end of the introduction guide tube in the endoscope therapeutic apparatus according to the sixth embodiment
- FIG. 19A and FIG. 19B are perspective views showing the distal end of the introduction guide tube in the endoscope therapeutic device according to a seventh embodiment of the present invention.
- FIG. 20 is a perspective view showing the final operating element of the introduction guide tube in the endoscope therapeutic device according to an eighth embodiment of the present invention.
- FIG. 21 is a perspective view showing a treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment of the present invention.
- FIG. 22 is a vertical cross-sectional view of the treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment;
- FIG. 23 is a plan view showing a gear train of the treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment;
- FIG. 24 is a perspective view showing the gear train of the treatment rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment;
- FIG. 25 is a perspective view of the distal end when the introduction guide tube of the endoscope therapeutic device according to the eighth embodiment is in use;
- FIG. 26 is a vertical cross-sectional view of the distal end of the introduction guide tube of the endoscope therapeutic device according to the eighth embodiment when in use;
- FIG. 27 is a perspective view showing the treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to a ninth embodiment of the present invention.
- FIG. 28 is a side view of the final operating element of the introduction guide tube in the endoscope therapeutic device according to the ninth embodiment.
- FIG. 1A is a perspective view of an endoscope therapeutic device according to the first embodiment of the present invention.
- a treatment tool introduction guide tube unit 1 is shown in FIG. 1A .
- FIG. 1B shows an insertion portion 3 of an endoscope 2 .
- the treatment tool introduction guide tube unit 1 is joined to the insertion portion 3 of the endoscope 2 by the joint tool described above.
- the treatment tool introduction guide tube unit 1 includes a plurality of treatment tool introduction guide tubes 4 a , 4 b as manipulators for operating the surgical operation tools including the treatment tools such as forceps or the like.
- the treatment guide tubes 4 a , 4 b are joined at a midsection of an insertion portion S thereof by a joint portion 6 , and is fixed and joined integrally.
- a joint hood 26 which constitutes the joint portion 6 is formed of a soft material.
- a mode for joining the two treatment tool introduction guide tubes 4 a , 4 b by the joint hood 26 is shown in FIG. 2 .
- the insertion portions 5 of the two treatment tool introduction guide tubes 4 a , 4 b can be formed as a single flexible tube of oval shape in lateral cross-section without using the joint hood 26 as described above.
- at least the joint portion 6 can be configured in such a manner.
- a fixed structure in which the insertion portions 5 of a plurality of the introduction guide tubes 4 a , 4 b are connected integrally to each other is provided.
- FIG. 6 is a perspective view of the treatment tool introduction guide tube 4 a ( 4 b ).
- the insertion portions 5 of the treatment tool introduction guide tubes 4 a , 4 b each include a distal portion 10 located at a distal extremity thereof, a first bending portion 11 is located on the proximal side of the distal portion 10 , a second bending portion 12 is located on the proximal side of the first bending portion 11 , and a soft portion 13 is provided behind the second bending portion 12 .
- a proximal final operating element 20 is provided at the proximal end of the insertion portion 5 of each of the introduction guide tubes 4 a or 4 b .
- the proximal final operating elements 20 each include a grip portion 21 , an insertion port 22 which communicates with a treatment tool guiding channel 14 (see FIG. 7 ), and a plurality of operating members for bending the bending portions 11 , 12 respectively.
- the operating member for bending includes two angle knobs 23 a , 23 b for operating the first bending portion 11 in two directions and one angle handle 24 for operating the second bending portion 12 in a single (e.g., vertical) direction.
- FIG. 7 is a vertical cross-sectional view of the insertion portion 5 of the introduction guide tube in the treatment tool introduction guide tube unit.
- a flexible tube 15 forming the treatment tool guiding channel 14 is disposed over the entire length in the insertion portion 5 of each of the introduction guide tubes 4 a , 4 b .
- the treatment tool guiding channel 14 opens toward the outside at the distal extremity of the insertion portion 5 via a channel hole 16 at the distal portion 10 and at the final operating element at the insertion port.
- the first bending portion 11 includes a plurality of curved pieces 17 joined so as to be capable of rotating freely to allow bending in the vertical and lateral directions, and is bent in the pulling direction of an operating wire 18 by pulling a plurality of the operating wires 18 .
- the second bending portion 12 (see FIG. 6 ) also has the same configuration to be bent by means of a plurality of the bending pieces, the second bending portion 12 is configured so as to be bent only in the vertical direction.
- the second bending portion 12 is provided so as to extend or project from the distal end of the joint portion 6 .
- the proximal portions in the movable sections including the bending portions 11 , 12 are fixedly supported by the joint hood 26 .
- a fixing portion fixing means for fixing the portions of the introduction guide tubes 4 a , 4 b in the vicinity of the proximal ends of the bending portions 11 , 12 respectively, and then fixing the same to each other is provided.
- the joint hood 26 constitutes a therapeutic instrument joint tool for joining a plurality of the introduction guide tubes 4 a , 4 b.
- the distal end of the joint hood 26 which supports both of the movable sections of the respective treatment tool introduction guide tubes 4 a , 4 b serves as a common fulcrum 27 . Therefore, the movable sections including the bending portions 11 , 12 can move respectively on the basis of the common fulcrum 27 .
- the fulcrum 27 is also a common fixed point for the movable sections of the respective introduction guide tubes 4 a , 4 b.
- FIG. 1B is a perspective view of the insertion portion 3 of the endoscope 2 .
- the insertion portion 3 of the endoscope 2 includes a distal portion 31 located at a distal extremity thereof, a bending portion 32 located on the proximal side of the distal portion 31 , and a soft portion 33 located on the proximal side of the bending portion 32 .
- the endoscope 2 has an observation function by the provision of an inspection window 34 , an illumination window 35 , and a channel port 36 at the distal end surface of the distal portion 31 .
- the bending portion 32 is bent by a final operating element (not shown) provided at a proximal end of the insertion portion 3 .
- FIG. 3 is an explanatory drawing showing the state of usage of the endoscope therapeutic device 1 including the treatment tool introduction guide tubes 4 a , 4 b and the endoscope 2 assembled together according to the first embodiment.
- the treatment tool introduction guide tube unit 1 is joined to the insertion portion 3 of the endoscope 2 by a joint tool 40 in a state of being placed along the insertion portion 3 of the endoscope 2 .
- the joint tool 40 is disposed in the vicinity of the distal end of the soft portion 33 averting the bending portion 32 of the endoscope 2 .
- the movable sections of the respective treatment tool introduction guide tubes 4 a , 4 b including the bending portions 11 , 12 are disposed corresponding to the bending portion 32 of the endoscope 2 , and are configured to be movable with respect to each other.
- the joint tool 40 includes a band member 43 having an insertion hole 41 for allowing the joint portion 6 of the introduction guide tube unit 1 to be inserted therethrough and an insertion hole 42 for allowing the insertion portion 3 of the endoscope 2 to be inserted therethrough, and the band member 43 is capable of opening and closing so that one end can be opened about a hinge 44 on the other end.
- a projection 45 is formed on one of the edges at the openable end of the band member 43 and a corresponding hole 46 for receiving the projection 45 for engagement is formed on the other edge.
- the operator assembles the introduction guide tube unit 1 to the insertion portion 3 of the endoscope 2 and guides the same into a body cavity as one unit.
- the operator assembles the introduction guide tube unit 1 to the insertion portion 3 of the endoscope 2 and guides the same into a body cavity as one unit.
- a trocar or an over tube (not shown) as a guiding member as is known in the art.
- the operator introduces the various treatment tools (including a suction tool) into the body cavity via the respective introduction guide tubes 4 a , 4 b of the introduction guide tube unit 1 , which are joined to the insertion portion 3 of the endoscope 2 , while observing the body cavity by the endoscope 2 to perform a required treatment. It is also possible to introduce another treatment tool through the channel port 36 and corresponding channel provided on the endoscope 2 to perform a treatment simultaneously.
- FIG. 3 shows a state in which an anatomy 47 is pulled upward.
- the operator pulls up the anatomy 47 using gripping forceps 48 introduced through one of the introduction guide tubes 4 a , holds the anatomy 47 using the gripping forceps 49 introduced through the other introduction guide tube 4 b , and moves the respective treatment tools in the opposite direction.
- the operator bends the bending portions 11 , 12 of the introduction guide tubes 4 a , 4 b respectively, and provides the opposite movements to the two pairs of forceps 48 , 49 to pull the anatomy 47 .
- the movable sections of the respective introduction guide tubes 4 a , 4 b which guide the respective gripping forceps 48 , 49 move in the opposite directions with reference to the fulcrum 27 , supporting forces exerted to the fulcrum 27 are mutually invalidated (canceled), and the movable sections of the respective introduction guide tubes 4 a , 4 b move with reference to the fulcrum 27 .
- the fulcrum 27 is approximately considered as a fixed point. Therefore, a force to be exerted to the gripping forceps 48 , 49 does deviate and can be exerted to the anatomy 47 as is. Such behavior is not limited to the case of puling up the anatomy 47 , but may be the same in the surgical operation such as to expand the anatomy 47 .
- the soft portion of the insertion portion is suspended in a space of the body cavity by the reaction received from the gripping forceps so as to be capable of moving freely. Therefore, a force exerted to the anatomy can become extremely small because the force generated by the reaction is absorbed in the soft insertion portion.
- the movable sections of the respective introduction guide tubes 4 a , 4 b which guide the gripping forceps 48 , 49 is fixedly supported by the common fulcrum 27 , the supporting forces generated by the reaction and exerted to the fulcrum 27 are mutually invalidated at the fulcrum 27 , whereby relatively stable support of the movable sections of the introduction guide tubes 4 a , 4 b is achieved. In other words, there is less possibility that the introduction guide tubes 4 a , 4 b move by themselves and hence the force is dissipated.
- the fulcrum 27 can be regarded as a fixed point, and hence the grip forceps 48 , 49 can be guided as intended with reference to the fulcrum 27 to perform a quick operation of treatment. In this manner, even when the two portions of the anatomy are gripped by the two treatment tools and the two portions are moved in the opposite directions as in the case of pulling up of the anatomy or expanding the anatomy, treatment can be performed with a strong force without any undesirable movement of the introduction guide tubes 4 a , 4 b and/or the endoscope 2 .
- the introduction guide tube unit 1 is used by being joined to the insertion portion 3 of the endoscope 2 .
- the same advantages can be achieved in the case in which the introduction guide tube unit 1 having a plurality of the introduction guide tubes joined to each other is used independently.
- the introduction guide tube unit 1 is used by being joined to the insertion portion 3 of the endoscope 2 , the positional relation with respect to the endoscope 2 is established during use, and hence the surgical situation can be observed easily, and the stable supporting balance is provided to the entire unit, whereby stability of operation is increased, thereby improving usability.
- FIG. 8 to FIG. 11 the endoscope therapeutic device according to a second embodiment of the present invention will be described.
- the same parts to those in the embodiment described above will be represented by the same reference numerals in the description.
- FIG. 8 is a partial perspective view of the endoscope therapeutic device according to the second embodiment of the present invention.
- the treatment tool introduction guide tube unit 1 according to the second embodiment is an assembly of the two treatment tool introduction guide tubes 4 a , 4 b integrally inserted through an over tube 61 formed of soft material.
- the treatment tool introduction guide tubes 4 a , 4 b are the same as those in the first embodiment.
- FIG. 9 is a perspective view showing the over tube 61 of the endoscope therapeutic device according to the second embodiment
- FIG. 10 is a lateral cross-sectional view of a fixed portion of the introduction guide tube built in the over tube 61 .
- the over tube 61 is formed with two insertion holes 62 a , 62 b for inserting the respective two treatment tool introduction guide tubes 4 a , 4 b separately in a juxtaposed manner.
- FIG. 9 is a perspective view showing the over tube 61 of the endoscope therapeutic device according to the second embodiment
- FIG. 10 is a lateral cross-sectional view of a fixed portion of the introduction guide tube built in the over tube 61 .
- the over tube 61 is formed with two insertion holes 62 a , 62 b for inserting the respective two treatment tool introduction guide tubes 4 a , 4 b separately in a juxtaposed manner.
- the respective insertion holes 62 a , 62 b are partitioned by a partitioning wall 63 for guiding the introduction guide tubes 4 a , 4 b separately, the insertion holes 62 a , 62 b partly communicate with each other and are formed close to each other.
- a fixing screw 64 is screwed into a sidewall of one of the insertion holes 62 b , and the introduction guide tube 4 b inserted through the insertion hole 62 b is tightened by the screw 64 , so that the introduction guide tube 4 b can be fixed.
- the introduction guide tube 4 a inserted through the other insertion hole 62 a is tightened by resilient deformation of the over tube 61 , which occurs when the introduction guide tube 4 b is tightened by the screw 64 , and is fixed to the insertion hole 62 b thereby.
- the fixing portion (fixing means) for fixing the portions of the introduction guide tube 61 in the vicinity of the proximal ends of the bending portions 11 , 12 respectively and then fixing the same to each other is provided.
- the over tube 61 itself constitutes the treatment equipment joint tool for joining a plurality of the introduction guide tubes 4 a , 4 b.
- FIG. 11 is an explanatory drawing showing the state of usage of the endoscope therapeutic device.
- the operator mounts the two treatment tool introduction guide tubes 4 a , 4 b to the over tube 61 respectively to form a single unit, and guides the same into the body cavity using the guide means such as trocar.
- the guide means such as trocar.
- the introduction guide tubes 4 a , 4 b projecting from the distal end of the over tube 61 are retained with the distal end of the over tube 61 as the fulcrum 27 , the movement of the introduction guide tubes 4 a , 4 b is stable and smooth.
- the gripping forceps 48 , 49 as the treatment tools are operated in the opposite directions by the introduction guide tubes 4 a , 4 b , the components of the force in the opposite directions exerted to the fulcrum 27 are mutually invalidated. Therefore, the movable operating sections of the introduction guide tubes 4 a , 4 b move with reference to the fulcrum 27 , and hence the force exerted to the gripping forceps 48 , 49 can be exerted to the anatomy 47 without dissipation.
- the operator can fix the portion in the vicinity of the boundary between the first bending portion 11 and the second bending portion 12 onto the over tube 61 by means of the screw 64 or the like with the sections of the second bending portions 12 of the respective introduction guide tubes 4 a , 4 b positioned within the over tube 61 and with only the first bending portion 11 projected from the over tube 61 .
- only the first bending portion 11 is bent about the portion in the vicinity of the boundary between the first bending portion 11 and the second bending portion 12 is set as a fulcrum.
- the present invention is not limited to the portion in the vicinity of the proximal end of the proximal-most second bending portion 12 , but may take a form in which the portion located at the midsection of the bending portion is fixed.
- the endoscope 2 is provided separately from the unit, and as shown in FIG. 11 , the endoscope 2 can be guided in the body cavity 65 along the over tube 61 of the unit for observing the state of treatment, or can guide a treatment tool such as a separate high-frequency knife 66 .
- FIG. 11 shows a state of incising the anatomy 47 , which is pulled up by the gripping forceps 48 , 49 , by means of the high-frequency knife 66 introduced through the endoscope 2 .
- FIG. 12 and FIG. 13 the endoscope therapeutic device according to a third embodiment of the present invention will be described.
- the same parts as in the embodiments described above are represented by the same reference numerals.
- the third embodiment is configured in such a manner that the above-described two treatment tool introduction guide tubes 4 a , 4 b and the endoscope 2 are joined by a joint tool 71 .
- the joint tool 71 includes a resilient member 75 having a hole portion 72 for fitting the insertion portion 5 of the introduction guide tube 4 a , a hole portion 73 for fitting the insertion portion S of the introduction guide tube 4 b , and a hole portion 74 for fitting the insertion portion 3 of the endoscope 2 disposed radially.
- the hole portions 72 , 73 , 74 of the joint tool 71 each are formed with a slit 76 for allowing the member to be put in or removed at the midsection thereof by deforming the portions of the resilient member 75 proximate to the slits 76 to insert the respective insertion portions of the introduction guide tubes 4 a , 4 b and endoscope 2 .
- FIG. 13 shows the state of usage of the third embodiment.
- the insertion portion 5 of the introduction guide tube 4 a , the insertion portion 5 of the introduction guide tube 4 b , and the insertion portion 3 of the endoscope 2 are mounted by being fitted to the hole portions 72 , 73 , 74 of the joint tool 71 corresponding thereto, respectively.
- the joint tool 71 is mounted and fixed to the distal portion 31 of the endoscope 2 .
- the supporting portion serves as the fulcrum 27 of the introduction guide tubes 4 a , 4 b . Therefore, as shown in FIG.
- the introduction guide tubes 4 a , 4 b and the endoscope 2 are connected by the joint tool 71 , the introduction guide tubes 4 a , 4 b are disposed at the position surrounding, and in the vicinity of, the insertion portion 3 of the endoscope 2 . Consequently, the same usage as the second embodiment described above is enabled.
- the joint tool 71 may also be disposed at other positions of the endoscope 2 and/or introduction guide tubes 4 a , 4 b.
- FIG. 14 the endoscope therapeutic device according to a fourth embodiment of the present invention will be described.
- the same parts as in the embodiments described above are represented by the same reference numerals in the description.
- a soft over tube 80 having a bending function is employed in the fourth embodiment.
- the distal portion of the over tube 80 includes a bending portion 81 , and the bending portion 81 is bent by the final operating element (not shown) disposed on a proximal side of the over tube 80 .
- the over tube 80 is formed with a hole 83 for receiving an introduction guide tube 82 inserted therethrough, two holes 85 for receiving two respective suction tubes 84 a , 84 b separately and a hole 86 for receiving the insertion portion 3 of the endoscope 2 in a sectional manner.
- the over tube 80 includes a fixed portion in the vicinity of the distal portion thereof, so that the inserted tools can be supported so that the relative position between the over tube 80 and the inserted tools does not change in the radial direction.
- the introduction guide tube 82 and the suction tubes 84 a , 84 b are mounted to the over tube 80 so as to be capable of moving in the fore-and-aft direction without wobbling in the radial direction.
- the movable sections of the introduction guide tube 82 and the suction tubes 84 a , 84 b projecting from the distal end of the over tube 80 are formed with bending portions 87 which are similar to that described above with regard to the introduction guide tubes 4 a , 4 b .
- the proximal portions of the bending portions 87 projecting from the distal end of the over tube 80 are supported by the over tube 80 , and the portions of the over tube 80 in the vicinity of the distal end serves as a fulcrum of the movable sections projecting forward therefrom.
- the operator causes the introduction guide tube 82 , the suction tubes 84 a , 84 b , and the insertion portion 3 of the endoscope 2 to project from the distal end of the over tube 80 .
- the distal ends of the two suction tubes 84 a , 84 b are placed on the anatomy 47 to adsorb the anatomy 47 .
- the operator can also bend the bending portion 87 of the suction tubes 84 a , 84 b which are projected from the distal end of the over tubes 80 as needed and pull the anatomy 47 upward.
- the operator can also expand the anatomy 47 by bending the bending portions 87 of the suction tubes 84 a , 84 b , which are projected from the distal end of the over tube 80 , as needed in the directions away from each other.
- the reaction forces exerted to the suction tubes 84 a , 84 b are mutually invalidated, so that the suction tubes 84 a , 84 b can be operated reliably with a strong force as intended about the distal end of the over tube 80 as the fulcrum.
- the treatment tools may be projected from the introduction guide tube 82 for treatment.
- the introduction guide tube 82 may be used as the suction tube.
- the suction tubes 84 a , 84 b may be replaced by the treatment tool introduction guide tubes, which are similar to that described above.
- FIG. 15 the endoscope therapeutic device according to a fifth embodiment of the present invention will be described.
- the same parts as in the embodiments described above are represented by the same reference numerals for description.
- a soft over tube 90 is employed.
- the soft over tube 90 is formed integrally with a plurality of manipulators 91 a , 91 b at the distal end of the soft over tube 90 .
- One of the manipulators 91 a is provided with a distal operating section 92 having flexibility, which is similar to the movement of the fingers of a human being, and the other manipulator 91 b is provided with a bending portion 93 with the bending function having flexibility which is similar to the movement of the wrist of a human being.
- the respective manipulators 91 a , 91 b are separately and remotely operated by an operation input means (not shown).
- the operation input means may be, for example, a glove-type input device to which the movement of the hand of the human being is input and mimicked by the manipulators 91 a , 91 b.
- the soft over tube 90 is formed with an insertion channel 95 to which the insertion portion 3 of the endoscope 2 is introduced.
- the endoscope 2 used here has an extra thin insertion portion 3 having only an observing function.
- the operator When using the endoscope therapeutic device, as shown in FIG. 15 , the operator performs treatment by gripping the treatment tool or by nipping the anatomy directly using the left and right manipulators 91 a , 91 b which have flexibility similar to the movement of the fingers of the human being.
- the operability can further be improved, and the usage can be acquired easily.
- the left and right manipulators 91 a , 91 b are mounted to the distal end of the soft over tube 90 , and fixedly and integrally supported. Accordingly, this supporting portion serves as the fulcrum of the manipulators 91 a , 91 b as the movable sections. Therefore, in the case of operating in the opposite directions using the respective manipulators 91 a , 91 b , the forces exerted to the respective manipulators 91 a , 91 b are mutually invalidated so that the respective manipulators 91 a , 91 b can be operated reliably with a strong force as intended about the distal end of the over tube 90 as the fulcrum.
- an introduction guide tube 100 in this therapeutic device includes a soft insertion portion 101 and a final operating element 102
- the final operating element 102 includes a grip portion 103 , a plurality of angle knobs 105 for bending the bending portion of the insertion portion 101 , an insertion port 107 that communicates with a channel of the insertion portion 101 , and a treatment tool operating lever 109 for operating a treatment tool operating mechanism, described later.
- the angle knob 105 is provided with a brake knob 105 a for locking the operating position thereof.
- the brake knob may be provided also on the treatment tool operating lever 109 .
- FIG. 18A and FIG. 18B are vertical cross-sectional views of a distal end of the introduction guide tube in the endoscope therapeutic device according to the sixth embodiment.
- an insertion portion 110 a of a treatment tool 110 such as gripping forceps, is inserted from the insertion port 107 of the final operating element 102 of the introduction guide tube 100 through a channel 106 , so as to be projected into the body cavity from an opening 106 a at the distal end of the channel 106 .
- a treatment tool operating mechanism 108 is built in the distal portion of the insertion portion 101 .
- the treatment tool operating mechanism 108 here includes a ring-shaped movable element 115 which allows insertion of the insertion portion 110 a of the treatment tool 110 in the distal portion of the insertion portion 101 so as to be capable of linear movement in the fore-and-aft axial direction.
- the distal end of an operating wire 116 inserted through the insertion portion 110 is connected to the movable element 115 .
- a movement control mechanism in which the operating wire 116 is moved in the fore-and-aft axial direction when the treatment tool operating lever 109 of the above-described final operating element 102 is operated, whereby the movable element 115 of the treatment tool operating mechanism 108 is moved in the fore-and-aft direction and the distal end 110 a of the treatment tool 110 is moved in the fore-and-aft direction, is configured.
- the movable element 115 constitutes a mechanism for selectively engaging and disengaging grip arms 117 as engaging members that engage part of the insertion portion 110 a of the treatment tool 110 by the operating wire 116 , which is operated on the proximal side.
- the distal portions of the respective grip arms 117 are resiliently biased so as to open outwardly in the free state shown in FIG. 18B .
- Each grip arm 117 is integrally formed with a holding portion 118 at the distal end thereof.
- a tightening member 121 is attached on the outside of each grip arm 117 , and the tightening member 121 is capable of sliding freely in the range between the movable element 115 and the holding portion 118 .
- the insertion portion 101 is formed with a guide rail 122 in the distal portion so as to guide the tightening member 121 linearly in the fore-and-aft direction.
- Positioning stoppers (stepped portions) 123 a , 123 b formed of walls extending vertically upward are formed at the front end and the rear end of the guide rail 122 , so that front and rear terminal positions of movement of the tightening member 121 are defined respectively.
- the tightening member 121 includes a sliding portion 124 to be guided by the guide rail 122 and a fastening ring portion 125 that slides on the outer periphery of the grip arm 117 . As shown in FIG. 18A , when the tightening member 121 is retracted, the respective grip arms 117 are tightened by the tightening member 121 , and the holding portions 118 of the respective grip arms 117 are pressed against the outer periphery of the insertion portion 110 a of the treatment member 110 to grip the treatment tool 110 by the movable element 115 .
- the treatment tool 110 can be moved in the fore-and-aft direction together with the introduction guide tube 100 .
- the tightening member 121 When the tightening member 121 is moved forward as shown in FIG. 18B , the distal portions of the respective grip arms 117 open and release the treatment tool 110 . In other words, the holding portions 118 of the respective grip arms 117 retract from the insertion portion 110 a of the treatment tool 110 and release the treatment tool 110 from the gripped state shown in FIG. 18A . Therefore, the treatment tool 110 can be moved in the fore-and-aft direction or in the rotational direction independently of the introduction guide tube 100 , whereby the operability of the treatment tool 110 is improved.
- the introduction guide tube 100 is used as the introduction guide tube in the device in the therapeutic system described above, and can be used for introduction of various treatment tools. It can also be applied to an unit form in which a plurality of the introduction guide tubes 100 are joined so that the supporting forces exerted to the movable sections of a plurality of the introduction guide tubes 100 are mutually invalidated at the common fulcrum.
- the general existing introduction guide tube is simply used for inserting the treatment tool therethrough.
- the treatment tool 110 can be rotated or moved in the fore-and-aft direction positively, and hence the reliable operation of the treatment tool 110 is achieved.
- the introduction guide tube 100 guarantees beneficial effects also when using the introduction guide tube 100 independently and separately from the endoscope 2 .
- An introduction guide tube 130 of this type differs from the above-described introduction guide tube 100 in that there is provided a treatment tool advancing-retracting mechanism.
- the treatment tool advancing-retracting mechanism supports a separate extremity member 132 at the distal portion 131 of the introduction guide tube 130 via a plurality of push rods 133 so as to be capable of moving in the fore-and-aft direction.
- the push rods 133 are moved in the fore-and-aft direction by operating the treatment tool operating lever 109 provided on the final operating element 102 of the introduction guide tube 130 , so that the extremity member 132 is moved in the fore-and-aft direction.
- FIG. 19A shows a state in which the extremity member 132 is waiting at a normal position which is retracted backward
- FIG. 19B shows a state in which the extremity member 132 is moved forward.
- a ring-shaped resilient member 135 as the resilient member is disposed at the peripheral edge of the distal end opening of the channel formed on the extremity member 132 .
- the ring-shaped resilient member 135 is used for gripping the insertion portion of the treatment tool 110 projected from the distal end opening of the channel by tightening the same with a resilient force.
- the treatment tool 110 is retained by the resiliently tightening force of the ring-shaped resilient member 135 and hence follows the movement of the extremity member 132 .
- the force that retains treatment tool 110 is such that when the insertion portion 110 a of the treatment tool 110 is pushed and pulled from the proximal side, only the treatment tool 110 can move against the retaining force of the ring-shaped resilient member 135 . It is also possible to retain the treatment tool 110 with a force of a strength that cannot move the treatment tool 110 .
- the above-described introduction guide tube 130 can also be used as the above-described introduction guide tube and as a member for introducing the treatment tool as a matter of course, and it can also be applied to a unit form in which a plurality of the introduction guide tubes 130 are joined so that the supporting forces exerted to the movable sections of a plurality of the introduction guide tubes 130 are mutually invalidated at the common fulcrum.
- the introduction guide tube 140 includes a soft insertion portion 141 and a final operating element 142 .
- the final operating element 142 includes a grip portion 143 , a plurality of angle knobs 145 for bending a bending portion 144 (see FIG. 21 ) of the insertion portion 141 , an insertion port 147 in communication with a channel 146 (see FIG. 22 ) of the insertion portion 141 , a treatment tool rotating knob 149 for operating a treatment tool rotating mechanism 148 described later.
- the angle knob 145 and the treatment tool rotating lever 149 are provided with brake knobs 145 a , 149 a for locking the operating positions thereof.
- the final operating element 142 is provided with an operating button 137 for performing operations such as suction or air supply using the channel 146 .
- a treatment tool 150 such as the grip forceps from the insertion port 147 of the final operating element 142 of the introduction guide tube 140 through the channel 146 , the treatment tool 150 is projected from a distal end opening of the channel 146 into the body cavity.
- the treatment tool rotating mechanism 148 is assembled in the distal portion of the insertion portion 141 , and is configured as shown in FIG. 21 to FIG. 26 .
- a cylindrical connecting mouth ring 153 to which the distal end of a soft tube 152 defining the channel 146 is connected, is provided in a distal portion 151 of the insertion portion 141 of the introduction guide tube 140 , and the connecting mouth ring 153 is fixed to a supporting member 154 fixed to the distal portion 151 .
- a cylindrical connecting mouth ring 153 to which the distal end of a soft tube 152 defining the channel 146 is connected, is provided in a distal portion 151 of the insertion portion 141 of the introduction guide tube 140 , and the connecting mouth ring 153 is fixed to a supporting member 154 fixed to the distal portion 151 .
- a cylindrical rotating member 156 is disposed along the connecting mouth ring 153 and a distal wall 155 of the distal portion 151 , and the rotating member 156 is rotatably supported about an elongated shaft of the channel 146 or a shaft extending in parallel with the elongated shaft.
- the rotating member 156 opens at the distal surface of the distal portion 151 of the introduction guide tube 140 and forms a distal end opening 146 a of the channel 146 .
- a bevel gear 157 as a driven gear is coaxially formed on the outer periphery of the rotating member 156 .
- a bevel gear 158 as a drive gear engages the bevel gear 157 .
- the shaft center of the bevel gear 158 is disposed orthogonally to the shaft center of the bevel gear 157 as the driven gear.
- the bevel gear 158 as the drive gear is rotatably supported in the distal portion of the insertion portion 141 .
- a pinion gear 159 is coaxially and integrally formed with the bevel gear 158 .
- a pair of racks 160 a , 160 b are disposed on both sides of the pinion gear 159 so as to engage therewith.
- the respective racks 160 a , 160 b are configured to be guided linearly by a guide, not shown, in the distal portion of the insertion portion 0 . 141 of the introduction guide tube 140 .
- Distal ends of operating wires 161 a , 161 b are connected to the respective racks 160 a , 160 b separately, and when the operator pushes or pulls the operating wires 161 a , 161 b from the proximal side, the racks 160 a , 160 b move in the fore-and-aft direction, so that the pinion gear 159 rotates.
- the operating wires 161 a , 161 b are pulled by operating the treatment tool rotating knob 149 provided on the final operating element 142 to move the racks 160 a , 160 b.
- a resilient member 165 formed of rubber or the like is provided at the peripheral edge of the distal end of the rotating member 156 .
- the resilient member 165 is exposed outward from the distal portion 151 of the insertion portion 141 of the introduction guide tube 140 .
- the resilient member 165 serves as anchoring member which abuts against the distal end of the treatment tool inserted through the channel 146 , and anchors itself with respect to the distal end of the treatment tool by a frictional force against the treatment tool or deformation thereof, so as to cause the treatment tool to rotate with the rotating member 156 .
- the treatment tool inserted through the introduction guide tube 140 can be rotated by the treatment tool rotating mechanism 148 .
- the operator inserts an insertion portion 150 a of the treatment tool 150 through the channel 146 and allows a distal grip member 150 b of the treatment tool 150 to project from the distal end of the introduction guide tube 140 .
- the operator opens the distal grip member 150 b by operating a link mechanism 168 for operating an openable and closable link mechanism 168 , causes the distal grip member 150 b to retract slightly in the opened state, and presses the member of the link mechanism 168 against the resilient member 165 for anchoring.
- the distal grip member 150 b of the treatment tool 150 is joined with the rotating member 156 by a frictional force or an engaging force between the resilient member 165 and the link mechanism 168 , so as to rotate with the rotating member 156 .
- the distal grip member 150 b of the treatment tool 150 can be rotated with the rotating member 156 .
- the distal grip member 150 b of the treatment tool 150 is rotated directly, accurate relation with respect to the amount of rotation can be maintained, and the distal grip member 150 b of the treatment tool 150 can be rotated quickly. It is also possible to twist the elongated insertion portion 150 a of the treatment tool 150 from the proximal side to assist the rotation of the distal grip member 150 b of the treatment tool 150 .
- FIG. 27 and FIG. 28 still another modification of the introduction guide tube provided with the treatment tool rotating mechanism as described above will be described as a ninth embodiment of the invention.
- the driven gear to be provided on the outer periphery of the rotating member 156 is a spur gear 171 .
- a spur gear 172 as a drive gear engages the spur gear 171 .
- the spur gear 172 as the drive gear is supported in the distal portion of the insertion portion 141 .
- a distal end of a torque transmission wire 173 which is configured to transmit rotational torque, is connected to a shaft of the spur gear 172 .
- the operator rotates the spur gear 172 as the drive gear and the spur gear 171 as the driven gear by twisting and rotating the torque transmission wire 173 from the proximal side.
- the rotating member 156 rotates together therewith.
- a rotating lever 175 is provided on the final operating element 142 of the introduction guide tube 170 so that the torque transmission wire 173 is rotated by operating the rotating lever 175 .
- the direction of operation of the operating mechanism on the proximal side by the rotating lever 175 is substantially parallel to the axis of rotation of the rotating mechanism at the distal end of the insertion portion.
- the structure of the treatment tool rotating mechanism other than those described here may be substantially the same as the above-described embodiments.
- the treatment tool rotating mechanism can be used for changing the direction of rotation of the treatment tool 150 . Since the driven gear is the spur gear 171 and the drive gear is the spur gear 172 , and the spur gear 172 is rotated by the torque transmission wire 173 , a mechanism to be built in the distal portion of the introduction guide tube 170 can be simplified.
- the treatment tool operating mechanism for moving the treatment tool in the fore-and-aft direction or for rotating the same is such that the treatment tool is built in the distal portion of the introduction guide tube in the aforementioned description, it is also possible to combine both configurations to obtain a form in which the treatment tool operating mechanism for moving the treatment tool in the fore-and-aft direction and rotating the same.
- the proximal portion of the treatment tool is twisted or moved in the fore-and-aft direction on the proximal side of the introduction guide tube.
- the insertion portion of the treatment tool introduced via the interior of the introduction guide tube is elongated and flexible, and the insertion portion of the treatment tool comes into contact with the inner wall of the introduction guide tube at many points and often snakes its way therein.
- the insertion portion of the treatment tool comes into a pressing contact with the inner wall of the introduction guide tube at the bending portion.
Abstract
In an endoscope therapeutic device having a plurality of introduction guide tubes for introducing a treatment tool into a body cavity, the introduction guide tubes are mutually joined at a position more proximal than bending portions thereof. Accordingly, the effects caused by the movement of the plurality of the introduction guide tubes are mutually invalidated at a joint portion as a fulcrum, so that the position of the introduction guide tube is relatively stabilized in the body cavity. As joining methods, there are integration, usage of a joint tool, and usage of an over tube. The operability is improved when the introduction guide tube is provided at the distal end thereof with a mechanism for retaining and/or rotating a distal end of a treatment tool inserted therethrough.
Description
- This application is based upon and claims the benefit of priority from prior Japanese Patent Application No.2004-118182, filed Apr. 13, 2004, the entire contents of which is incorporated herein by reference.
- 1. Field of the Invention
- The present invention relates to an endoscope therapeutic device for performing treatment under observation via an endoscope by introducing a treatment tool through an introduction guide tube with a bending function into a body cavity, and an introduction guide tube thereof.
- 2. Description of the Related Art
- An endoscope therapeutic device for performing treatment using a treatment tool under observation via an endoscope by introducing the treatment tool through a soft introduction guide tube into a body cavity is known in the related art. The introduction guide tube used in the endoscope therapeutic device of this type is referred also as a “channel tube”. Recently, as an introduction guide tube of this type, an introduction guide tube with a bending function, in which a bending portion is provided in the vicinity of the distal end of the tube, and the bending portion is capable of being bent by a proximal final operating element is proposed (See JP-A-2000-33071). This endoscope therapeutic device is configured in such a manner that treatment tools are guided via a plurality of introduction guide tubes with a bending function, respectively, into a body cavity, and the directions of the treatment tools in the body cavity are adjusted by bending the bending portions of the introduction guide tubes.
- An endoscope therapeutic device according to the present invention includes a plurality of introduction guide tubes for introducing treatment tools into a body cavity, wherein the plurality of introduction guide tubes are joined to each other at portions proximal to the bending portions thereof. In a case where there are a plurality of bending portions on the introduction guide tube, a joint portion is placed in a more proximal position than the distal-most bending portion.
- In this manner, the effects caused by the movement of a plurality of the introduction guide tubes are mutually invalidated at a joint portion as a fulcrum, so that the position of the introduction guide tube is relatively stabilized in the body cavity. Therefore, the operability is improved. Also, since the bending portions are located on the more distal side than the joint portion, good operability can be maintained even when they are joined.
- The form of joint may be such that a part of the insertion portion that is located on a more proximal side than the bending portion of the introduction guide tube is integrally joined with other introduction guide tubes. In this case, a stable connection is achieved. It is also possible to join the introduction guide tubes with a joint tool. In this case, since the introduction guide tubes can be replaced, it is applicable to various embodiments. It is also possible to provide a connecting function to an over tube through which the introduction guide tubes are inserted.
- When the joint tool is resiliently deformed to tighten the introduction guide tubes to be inserted, a stable joint is achieved.
- In addition to the introduction guide tubes, the positions of the endoscope, a suction tube, and the like in the body cavity are also stabilized by being joined as a matter of course. Further, an operating mechanism for operating the distal end of the treatment tool to be inserted therethrough may preferably be provided at the distal end of the introduction guide tube. Since the introduction guide tube is provided with a function to operate the treatment tool in addition to the function to receive the treatment tool inserted therethrough, operability is improved. Since the treating portion and the operating portion are located close to each other, a delicate operation can be performed.
- The operator can operate the treatment tools inserted through the guide tubes without unlinking his/her hand from the guide tube by operating on the proximal side of the guide tube, and hence good operability is achieved. The operation of the treatment tool includes, for example, the fore-and-aft movement or the rotation of the treatment tool.
- These and other features, aspects, and advantages of the apparatus and methods of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:
-
FIG. 1A is a perspective view of an endoscope therapeutic device according to a first embodiment of the present invention; -
FIG. 1B is a perspective view of a distal portion of an endoscope for use with the endoscope therapeutic device ofFIG. 1A ; -
FIG. 2 is a lateral cross-sectional view of a joint portion in the endoscope therapeutic device ofFIG. 1A as taken along line 2-2 thereof; -
FIG. 3 is an explanatory drawing showing the state of usage of the endoscope therapeutic device according to the first embodiment; -
FIG. 4 is a perspective view showing the joint in an enlarged manner in a state in which a treatment tool introduction guide tube unit is built in the endoscope in the endoscope therapeutic device according to the first embodiment; -
FIG. 5 is a perspective view showing the joint for assembling the treatment tool introduction guide tube unit to the endoscope in the endoscope therapeutic device according to the first embodiment; -
FIG. 6 is a perspective view showing the introduction guide tube in the treatment tool introduction guide tube unit of the endoscope therapeutic device according to the first embodiment; -
FIG. 7 is a cross-sectional view of a distal end portion of the introduction guide tube in the treatment tool introduction guide tube unit of the endoscope therapeutic device according to the first embodiment; -
FIG. 8 is a partial perspective view of the endoscope therapeutic device according to a second embodiment of the present invention; -
FIG. 9 is a perspective view showing an over tube of the endoscope therapeutic device according to the second embodiment; -
FIG. 10 is a cross-sectional view of a fixed portion of the endoscope therapeutic device ofFIG. 8 as taken along line 10-10 thereof; -
FIG. 11 is an explanatory drawing showing the state of usage of the endoscope therapeutic device according to the second embodiment; -
FIG. 12 is an exploded perspective view of the endoscope therapeutic device according to a third embodiment of the present invention; -
FIG. 13 is an explanatory drawing showing the state of usage of the endoscope therapeutic device according to the third embodiment; -
FIG. 14 is a perspective view showing a distal end of the endoscope therapeutic device according to a fourth embodiment of the present invention; -
FIG. 15 is a perspective view showing the distal end of the endoscope therapeutic device according to a fifth embodiment of the present invention; -
FIG. 16 is a perspective view showing a final operating element of the introduction guide tube in the endoscope therapeutic device according to a sixth embodiment of the present invention; -
FIG. 17 is a plan view of the final operating element of the introduction guide tube in the endoscope therapeutic device according to the sixth embodiment; -
FIG. 18A andFIG. 18B are vertical cross-sectional views of the distal end of the introduction guide tube in the endoscope therapeutic apparatus according to the sixth embodiment; -
FIG. 19A andFIG. 19B are perspective views showing the distal end of the introduction guide tube in the endoscope therapeutic device according to a seventh embodiment of the present invention; -
FIG. 20 is a perspective view showing the final operating element of the introduction guide tube in the endoscope therapeutic device according to an eighth embodiment of the present invention; -
FIG. 21 is a perspective view showing a treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment of the present invention; -
FIG. 22 is a vertical cross-sectional view of the treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment; -
FIG. 23 is a plan view showing a gear train of the treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment; -
FIG. 24 is a perspective view showing the gear train of the treatment rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to the eighth embodiment; -
FIG. 25 is a perspective view of the distal end when the introduction guide tube of the endoscope therapeutic device according to the eighth embodiment is in use; -
FIG. 26 is a vertical cross-sectional view of the distal end of the introduction guide tube of the endoscope therapeutic device according to the eighth embodiment when in use; -
FIG. 27 is a perspective view showing the treatment tool rotating mechanism built in the distal end of the introduction guide tube in the endoscope therapeutic device according to a ninth embodiment of the present invention; and -
FIG. 28 is a side view of the final operating element of the introduction guide tube in the endoscope therapeutic device according to the ninth embodiment. - Embodiments of the invention will be described below with reference to the accompanying drawings.
- Referring now to
FIG. 1 toFIG. 7 , an endoscope therapeutic device according to a first embodiment of the present invention will be described.FIG. 1A is a perspective view of an endoscope therapeutic device according to the first embodiment of the present invention. A treatment tool introductionguide tube unit 1 is shown inFIG. 1A .FIG. 1B shows aninsertion portion 3 of anendoscope 2. In the endoscope therapeutic device according to the first embodiment, the treatment tool introductionguide tube unit 1 is joined to theinsertion portion 3 of theendoscope 2 by the joint tool described above. - The treatment tool introduction
guide tube unit 1 includes a plurality of treatment toolintroduction guide tubes treatment guide tubes joint portion 6, and is fixed and joined integrally. Ajoint hood 26, which constitutes thejoint portion 6 is formed of a soft material. A mode for joining the two treatment toolintroduction guide tubes joint hood 26 is shown inFIG. 2 . It is also possible to form at least part of theinsertion portions 5 of the two treatment toolintroduction guide tubes joint hood 26 as described above. For example, at least thejoint portion 6 can be configured in such a manner. In this case as well, a fixed structure in which theinsertion portions 5 of a plurality of theintroduction guide tubes -
FIG. 6 is a perspective view of the treatment toolintroduction guide tube 4 a (4 b). As shown inFIG. 6 , theinsertion portions 5 of the treatment toolintroduction guide tubes distal portion 10 located at a distal extremity thereof, afirst bending portion 11 is located on the proximal side of thedistal portion 10, asecond bending portion 12 is located on the proximal side of thefirst bending portion 11, and asoft portion 13 is provided behind thesecond bending portion 12. A proximalfinal operating element 20 is provided at the proximal end of theinsertion portion 5 of each of theintroduction guide tubes final operating elements 20 each include agrip portion 21, aninsertion port 22 which communicates with a treatment tool guiding channel 14 (seeFIG. 7 ), and a plurality of operating members for bending the bendingportions angle knobs first bending portion 11 in two directions and one angle handle 24 for operating thesecond bending portion 12 in a single (e.g., vertical) direction. -
FIG. 7 is a vertical cross-sectional view of theinsertion portion 5 of the introduction guide tube in the treatment tool introduction guide tube unit. As shown inFIG. 7 , aflexible tube 15 forming the treatmenttool guiding channel 14 is disposed over the entire length in theinsertion portion 5 of each of theintroduction guide tubes tool guiding channel 14 opens toward the outside at the distal extremity of theinsertion portion 5 via achannel hole 16 at thedistal portion 10 and at the final operating element at the insertion port. - The
first bending portion 11 includes a plurality ofcurved pieces 17 joined so as to be capable of rotating freely to allow bending in the vertical and lateral directions, and is bent in the pulling direction of anoperating wire 18 by pulling a plurality of the operatingwires 18. Although the second bending portion 12 (seeFIG. 6 ) also has the same configuration to be bent by means of a plurality of the bending pieces, thesecond bending portion 12 is configured so as to be bent only in the vertical direction. - As shown in
FIG. 1A , thesecond bending portion 12 is provided so as to extend or project from the distal end of thejoint portion 6. In other words, in the respective treatment toolintroduction guide tubes portions joint hood 26. In the first embodiment in this configuration, a fixing portion (fixing means) for fixing the portions of theintroduction guide tubes portions joint hood 26 constitutes a therapeutic instrument joint tool for joining a plurality of theintroduction guide tubes - Then, the distal end of the
joint hood 26 which supports both of the movable sections of the respective treatment toolintroduction guide tubes common fulcrum 27. Therefore, the movable sections including the bendingportions common fulcrum 27. Thefulcrum 27 is also a common fixed point for the movable sections of the respectiveintroduction guide tubes - Subsequently, referring to
FIG. 1B , theendoscope 2 will be described.FIG. 1B is a perspective view of theinsertion portion 3 of theendoscope 2. As shown inFIG. 1B , theinsertion portion 3 of theendoscope 2 includes adistal portion 31 located at a distal extremity thereof, a bendingportion 32 located on the proximal side of thedistal portion 31, and asoft portion 33 located on the proximal side of the bendingportion 32. Theendoscope 2 has an observation function by the provision of an inspection window 34, anillumination window 35, and achannel port 36 at the distal end surface of thedistal portion 31. The bendingportion 32 is bent by a final operating element (not shown) provided at a proximal end of theinsertion portion 3. -
FIG. 3 is an explanatory drawing showing the state of usage of the endoscopetherapeutic device 1 including the treatment toolintroduction guide tubes endoscope 2 assembled together according to the first embodiment. As shown inFIG. 3 , the treatment tool introductionguide tube unit 1 is joined to theinsertion portion 3 of theendoscope 2 by ajoint tool 40 in a state of being placed along theinsertion portion 3 of theendoscope 2. Thejoint tool 40 is disposed in the vicinity of the distal end of thesoft portion 33 averting the bendingportion 32 of theendoscope 2. Since the portion of the introductionguide tube unit 1 in the vicinity of the distal end is joined by thejoint tool 40, the movable sections of the respective treatment toolintroduction guide tubes portions portion 32 of theendoscope 2, and are configured to be movable with respect to each other. - As shown in
FIG. 4 andFIG. 5 , thejoint tool 40 includes aband member 43 having aninsertion hole 41 for allowing thejoint portion 6 of the introductionguide tube unit 1 to be inserted therethrough and aninsertion hole 42 for allowing theinsertion portion 3 of theendoscope 2 to be inserted therethrough, and theband member 43 is capable of opening and closing so that one end can be opened about ahinge 44 on the other end. Aprojection 45 is formed on one of the edges at the openable end of theband member 43 and a correspondinghole 46 for receiving theprojection 45 for engagement is formed on the other edge. - Subsequently, a case of using the endoscope therapeutic device will be described. As shown in
FIG. 3 , the operator assembles the introductionguide tube unit 1 to theinsertion portion 3 of theendoscope 2 and guides the same into a body cavity as one unit. When guiding the unit assembled into one piece into the body cavity as described above, it is also possible to guide it into the body cavity using a trocar or an over tube (not shown) as a guiding member as is known in the art. - Then, the operator introduces the various treatment tools (including a suction tool) into the body cavity via the respective
introduction guide tubes guide tube unit 1, which are joined to theinsertion portion 3 of theendoscope 2, while observing the body cavity by theendoscope 2 to perform a required treatment. It is also possible to introduce another treatment tool through thechannel port 36 and corresponding channel provided on theendoscope 2 to perform a treatment simultaneously. -
FIG. 3 shows a state in which ananatomy 47 is pulled upward. In this example of treatment, the operator pulls up theanatomy 47 using grippingforceps 48 introduced through one of theintroduction guide tubes 4 a, holds theanatomy 47 using the grippingforceps 49 introduced through the otherintroduction guide tube 4 b, and moves the respective treatment tools in the opposite direction. In other words, the operator bends the bendingportions introduction guide tubes forceps anatomy 47. - Here, since the movable sections of the respective
introduction guide tubes forceps fulcrum 27, supporting forces exerted to the fulcrum 27 are mutually invalidated (canceled), and the movable sections of the respectiveintroduction guide tubes fulcrum 27. Thefulcrum 27 is approximately considered as a fixed point. Therefore, a force to be exerted to the grippingforceps anatomy 47 as is. Such behavior is not limited to the case of puling up theanatomy 47, but may be the same in the surgical operation such as to expand theanatomy 47. - In general, in case of using the single soft introduction guide tube or the soft endoscope independently, the soft portion of the insertion portion is suspended in a space of the body cavity by the reaction received from the gripping forceps so as to be capable of moving freely. Therefore, a force exerted to the anatomy can become extremely small because the force generated by the reaction is absorbed in the soft insertion portion.
- However, in the first embodiment, since the movable sections of the respective
introduction guide tubes forceps common fulcrum 27, the supporting forces generated by the reaction and exerted to the fulcrum 27 are mutually invalidated at thefulcrum 27, whereby relatively stable support of the movable sections of theintroduction guide tubes introduction guide tubes grip forceps introduction guide tubes endoscope 2. - In the first embodiment described above, the case in which the introduction
guide tube unit 1 is used by being joined to theinsertion portion 3 of theendoscope 2 has been described. However, the same advantages can be achieved in the case in which the introductionguide tube unit 1 having a plurality of the introduction guide tubes joined to each other is used independently. However, when the introductionguide tube unit 1 is used by being joined to theinsertion portion 3 of theendoscope 2, the positional relation with respect to theendoscope 2 is established during use, and hence the surgical situation can be observed easily, and the stable supporting balance is provided to the entire unit, whereby stability of operation is increased, thereby improving usability. - In the case in which the treatment tool is used via the channel provided in the
endoscope 2, the form of usage in which the supporting function is provided as described above is also conceivable as well as other various forms of usage. - Referring now to
FIG. 8 toFIG. 11 , the endoscope therapeutic device according to a second embodiment of the present invention will be described. The same parts to those in the embodiment described above will be represented by the same reference numerals in the description. -
FIG. 8 is a partial perspective view of the endoscope therapeutic device according to the second embodiment of the present invention. As shown inFIG. 8 , the treatment tool introductionguide tube unit 1 according to the second embodiment is an assembly of the two treatment toolintroduction guide tubes tube 61 formed of soft material. The treatment toolintroduction guide tubes -
FIG. 9 is a perspective view showing the overtube 61 of the endoscope therapeutic device according to the second embodiment, andFIG. 10 is a lateral cross-sectional view of a fixed portion of the introduction guide tube built in the overtube 61. As shown inFIG. 9 , the overtube 61 is formed with twoinsertion holes introduction guide tubes FIG. 10 , although the respective insertion holes 62 a, 62 b are partitioned by apartitioning wall 63 for guiding theintroduction guide tubes - A fixing
screw 64 is screwed into a sidewall of one of the insertion holes 62 b, and theintroduction guide tube 4 b inserted through theinsertion hole 62 b is tightened by thescrew 64, so that theintroduction guide tube 4 b can be fixed. Theintroduction guide tube 4 a inserted through theother insertion hole 62 a is tightened by resilient deformation of theover tube 61, which occurs when theintroduction guide tube 4 b is tightened by thescrew 64, and is fixed to theinsertion hole 62 b thereby. - In other words, in the second embodiment in this configuration, the fixing portion (fixing means) for fixing the portions of the
introduction guide tube 61 in the vicinity of the proximal ends of the bendingportions tube 61 itself constitutes the treatment equipment joint tool for joining a plurality of theintroduction guide tubes - As shown in
FIG. 8 , when the two treatment toolintroduction guide tubes tube 61, thedistal portion 10 and the sections of the bendingportions over tube 61 and project forward (distally). Normally, the distal ends of thesoft portions 13 are also projected at least slightly when mounted. - Subsequently, the case where this endoscope therapeutic device is used will be described.
FIG. 11 is an explanatory drawing showing the state of usage of the endoscope therapeutic device. As shown inFIG. 11 , the operator mounts the two treatment toolintroduction guide tubes tube 61 respectively to form a single unit, and guides the same into the body cavity using the guide means such as trocar. Here, since theintroduction guide tubes over tube 61 are retained with the distal end of theover tube 61 as thefulcrum 27, the movement of theintroduction guide tubes forceps introduction guide tubes introduction guide tubes fulcrum 27, and hence the force exerted to the grippingforceps anatomy 47 without dissipation. - Alternatively, the operator can fix the portion in the vicinity of the boundary between the
first bending portion 11 and thesecond bending portion 12 onto the overtube 61 by means of thescrew 64 or the like with the sections of thesecond bending portions 12 of the respectiveintroduction guide tubes tube 61 and with only thefirst bending portion 11 projected from the overtube 61. In this case, only thefirst bending portion 11 is bent about the portion in the vicinity of the boundary between thefirst bending portion 11 and thesecond bending portion 12 is set as a fulcrum. In other words, the present invention is not limited to the portion in the vicinity of the proximal end of the proximal-mostsecond bending portion 12, but may take a form in which the portion located at the midsection of the bending portion is fixed. - In the second embodiment, the
endoscope 2 is provided separately from the unit, and as shown inFIG. 11 , theendoscope 2 can be guided in thebody cavity 65 along the overtube 61 of the unit for observing the state of treatment, or can guide a treatment tool such as a separate high-frequency knife 66.FIG. 11 shows a state of incising theanatomy 47, which is pulled up by the grippingforceps frequency knife 66 introduced through theendoscope 2. - Referring now to
FIG. 12 andFIG. 13 , the endoscope therapeutic device according to a third embodiment of the present invention will be described. The same parts as in the embodiments described above are represented by the same reference numerals. - The third embodiment is configured in such a manner that the above-described two treatment tool
introduction guide tubes endoscope 2 are joined by ajoint tool 71. As shown inFIG. 12 , thejoint tool 71 includes aresilient member 75 having ahole portion 72 for fitting theinsertion portion 5 of theintroduction guide tube 4 a, ahole portion 73 for fitting the insertion portion S of theintroduction guide tube 4 b, and ahole portion 74 for fitting theinsertion portion 3 of theendoscope 2 disposed radially. Thehole portions joint tool 71 each are formed with aslit 76 for allowing the member to be put in or removed at the midsection thereof by deforming the portions of theresilient member 75 proximate to theslits 76 to insert the respective insertion portions of theintroduction guide tubes endoscope 2. -
FIG. 13 shows the state of usage of the third embodiment. Theinsertion portion 5 of theintroduction guide tube 4 a, theinsertion portion 5 of theintroduction guide tube 4 b, and theinsertion portion 3 of theendoscope 2 are mounted by being fitted to thehole portions joint tool 71 corresponding thereto, respectively. Thejoint tool 71 is mounted and fixed to thedistal portion 31 of theendoscope 2. In order to fixedly retain thesoft portions 13 of theintroduction guide tubes fulcrum 27 of theintroduction guide tubes FIG. 13 , when theintroduction guide tubes endoscope 2 are connected by thejoint tool 71, theintroduction guide tubes insertion portion 3 of theendoscope 2. Consequently, the same usage as the second embodiment described above is enabled. Thejoint tool 71 may also be disposed at other positions of theendoscope 2 and/orintroduction guide tubes - Subsequently, referring to
FIG. 14 , the endoscope therapeutic device according to a fourth embodiment of the present invention will be described. The same parts as in the embodiments described above are represented by the same reference numerals in the description. - A soft over
tube 80 having a bending function is employed in the fourth embodiment. The distal portion of theover tube 80 includes a bendingportion 81, and the bendingportion 81 is bent by the final operating element (not shown) disposed on a proximal side of theover tube 80. The overtube 80 is formed with ahole 83 for receiving anintroduction guide tube 82 inserted therethrough, twoholes 85 for receiving tworespective suction tubes hole 86 for receiving theinsertion portion 3 of theendoscope 2 in a sectional manner. - Then, when the
introduction guide tube 82, thesuction tubes insertion portion 3 of theendoscope 2 are inserted through the correspondingholes over tube 80 respectively, these members are unitized. The overtube 80 includes a fixed portion in the vicinity of the distal portion thereof, so that the inserted tools can be supported so that the relative position between theover tube 80 and the inserted tools does not change in the radial direction. Theintroduction guide tube 82 and thesuction tubes tube 80 so as to be capable of moving in the fore-and-aft direction without wobbling in the radial direction. The movable sections of theintroduction guide tube 82 and thesuction tubes over tube 80 are formed with bendingportions 87 which are similar to that described above with regard to theintroduction guide tubes portions 87 projecting from the distal end of theover tube 80 are supported by the overtube 80, and the portions of theover tube 80 in the vicinity of the distal end serves as a fulcrum of the movable sections projecting forward therefrom. - When using this unit, as shown in
FIG. 14 , the operator causes theintroduction guide tube 82, thesuction tubes insertion portion 3 of theendoscope 2 to project from the distal end of theover tube 80. Then, for example, the distal ends of the twosuction tubes anatomy 47 to adsorb theanatomy 47. The operator can also bend the bendingportion 87 of thesuction tubes over tubes 80 as needed and pull theanatomy 47 upward. The operator can also expand theanatomy 47 by bending the bendingportions 87 of thesuction tubes over tube 80, as needed in the directions away from each other. - In the usage thereof, since the movable sections of the
respective suction tubes suction tubes suction tubes over tube 80 as the fulcrum. The treatment tools may be projected from theintroduction guide tube 82 for treatment. - The
introduction guide tube 82 may be used as the suction tube. Alternatively, thesuction tubes - Referring now to
FIG. 15 , the endoscope therapeutic device according to a fifth embodiment of the present invention will be described. The same parts as in the embodiments described above are represented by the same reference numerals for description. - In the fifth embodiment, a soft over
tube 90 is employed. The soft overtube 90 is formed integrally with a plurality ofmanipulators tube 90. One of themanipulators 91 a is provided with adistal operating section 92 having flexibility, which is similar to the movement of the fingers of a human being, and theother manipulator 91 b is provided with a bendingportion 93 with the bending function having flexibility which is similar to the movement of the wrist of a human being. Therespective manipulators manipulators - The soft over
tube 90 is formed with aninsertion channel 95 to which theinsertion portion 3 of theendoscope 2 is introduced. Theendoscope 2 used here has an extrathin insertion portion 3 having only an observing function. - When using the endoscope therapeutic device, as shown in
FIG. 15 , the operator performs treatment by gripping the treatment tool or by nipping the anatomy directly using the left andright manipulators - The left and
right manipulators tube 90, and fixedly and integrally supported. Accordingly, this supporting portion serves as the fulcrum of themanipulators respective manipulators respective manipulators respective manipulators over tube 90 as the fulcrum. - Referring now to
FIG. 16 toFIG. 18 , another therapeutic device in which the introduction guide tube as described above is modified will be described as a sixth embodiment of the present invention. As shown inFIG. 16 andFIG. 17 , anintroduction guide tube 100 in this therapeutic device includes asoft insertion portion 101 and afinal operating element 102, and thefinal operating element 102 includes agrip portion 103, a plurality ofangle knobs 105 for bending the bending portion of theinsertion portion 101, aninsertion port 107 that communicates with a channel of theinsertion portion 101, and a treatmenttool operating lever 109 for operating a treatment tool operating mechanism, described later. Theangle knob 105 is provided with abrake knob 105 a for locking the operating position thereof. The brake knob may be provided also on the treatmenttool operating lever 109. -
FIG. 18A andFIG. 18B are vertical cross-sectional views of a distal end of the introduction guide tube in the endoscope therapeutic device according to the sixth embodiment. As shown inFIG. 18A andFIG. 18B , aninsertion portion 110 a of atreatment tool 110, such as gripping forceps, is inserted from theinsertion port 107 of thefinal operating element 102 of theintroduction guide tube 100 through achannel 106, so as to be projected into the body cavity from an opening 106 a at the distal end of thechannel 106. - A treatment
tool operating mechanism 108 is built in the distal portion of theinsertion portion 101. The treatmenttool operating mechanism 108 here includes a ring-shapedmovable element 115 which allows insertion of theinsertion portion 110 a of thetreatment tool 110 in the distal portion of theinsertion portion 101 so as to be capable of linear movement in the fore-and-aft axial direction. The distal end of anoperating wire 116 inserted through theinsertion portion 110 is connected to themovable element 115. Accordingly, a movement control mechanism in which theoperating wire 116 is moved in the fore-and-aft axial direction when the treatmenttool operating lever 109 of the above-describedfinal operating element 102 is operated, whereby themovable element 115 of the treatmenttool operating mechanism 108 is moved in the fore-and-aft direction and thedistal end 110 a of thetreatment tool 110 is moved in the fore-and-aft direction, is configured. Themovable element 115 constitutes a mechanism for selectively engaging and disengaginggrip arms 117 as engaging members that engage part of theinsertion portion 110 a of thetreatment tool 110 by theoperating wire 116, which is operated on the proximal side. - As shown in
FIG. 18A andFIG. 18B , a plurality of thegrip arms 117 as engaging members that engage part of theinsertion portion 110 a of thetreatment tool 110 project forward from themovable element 115. The distal portions of therespective grip arms 117 are resiliently biased so as to open outwardly in the free state shown inFIG. 18B . Eachgrip arm 117 is integrally formed with a holdingportion 118 at the distal end thereof. A tighteningmember 121 is attached on the outside of eachgrip arm 117, and the tighteningmember 121 is capable of sliding freely in the range between themovable element 115 and the holdingportion 118. Theinsertion portion 101 is formed with aguide rail 122 in the distal portion so as to guide the tighteningmember 121 linearly in the fore-and-aft direction. Positioning stoppers (stepped portions) 123 a, 123 b formed of walls extending vertically upward are formed at the front end and the rear end of theguide rail 122, so that front and rear terminal positions of movement of the tighteningmember 121 are defined respectively. - The tightening
member 121 includes a slidingportion 124 to be guided by theguide rail 122 and afastening ring portion 125 that slides on the outer periphery of thegrip arm 117. As shown inFIG. 18A , when the tighteningmember 121 is retracted, therespective grip arms 117 are tightened by the tighteningmember 121, and the holdingportions 118 of therespective grip arms 117 are pressed against the outer periphery of theinsertion portion 110 a of thetreatment member 110 to grip thetreatment tool 110 by themovable element 115. - By moving the
movable element 115 by theoperating wire 116 in the fore-and-aft direction in the state in which the treatment tool is constrained as shown inFIG. 18A , thetreatment tool 110 can be moved in the fore-and-aft direction together with theintroduction guide tube 100. In this manner, complicated operation such as to operate with the hand unlinked from the final operating element of theintroduction guide tube 100 or the endoscope as in a case where the operator grips the distal end of thetreatment tool 110 directly and pulls and pushes the proximal end of thetreatment tool 110 by hand to move the distal portion in the fore-and-aft direction is not necessary, and the fore-and-aft movement of thetreatment tool 110 can be performed easily without unlinking the hand from the final operating element. - When the tightening
member 121 is moved forward as shown inFIG. 18B , the distal portions of therespective grip arms 117 open and release thetreatment tool 110. In other words, the holdingportions 118 of therespective grip arms 117 retract from theinsertion portion 110 a of thetreatment tool 110 and release thetreatment tool 110 from the gripped state shown inFIG. 18A . Therefore, thetreatment tool 110 can be moved in the fore-and-aft direction or in the rotational direction independently of theintroduction guide tube 100, whereby the operability of thetreatment tool 110 is improved. - The
introduction guide tube 100 is used as the introduction guide tube in the device in the therapeutic system described above, and can be used for introduction of various treatment tools. It can also be applied to an unit form in which a plurality of theintroduction guide tubes 100 are joined so that the supporting forces exerted to the movable sections of a plurality of theintroduction guide tubes 100 are mutually invalidated at the common fulcrum. The general existing introduction guide tube is simply used for inserting the treatment tool therethrough. However, with theintroduction guide tube 100 disclosed here, thetreatment tool 110 can be rotated or moved in the fore-and-aft direction positively, and hence the reliable operation of thetreatment tool 110 is achieved. Theintroduction guide tube 100 guarantees beneficial effects also when using theintroduction guide tube 100 independently and separately from theendoscope 2. - Subsequently, referring to
FIG. 19A andFIG. 19B , a modification of the above-described introduction guide tube will be described as a seventh embodiment of the present invention. Anintroduction guide tube 130 of this type differs from the above-describedintroduction guide tube 100 in that there is provided a treatment tool advancing-retracting mechanism. In other words, the treatment tool advancing-retracting mechanism supports aseparate extremity member 132 at thedistal portion 131 of theintroduction guide tube 130 via a plurality ofpush rods 133 so as to be capable of moving in the fore-and-aft direction. Thepush rods 133 are moved in the fore-and-aft direction by operating the treatmenttool operating lever 109 provided on thefinal operating element 102 of theintroduction guide tube 130, so that theextremity member 132 is moved in the fore-and-aft direction. -
FIG. 19A shows a state in which theextremity member 132 is waiting at a normal position which is retracted backward, andFIG. 19B shows a state in which theextremity member 132 is moved forward. - As shown in
FIG. 19A andFIG. 19B , a ring-shapedresilient member 135 as the resilient member is disposed at the peripheral edge of the distal end opening of the channel formed on theextremity member 132. The ring-shapedresilient member 135 is used for gripping the insertion portion of thetreatment tool 110 projected from the distal end opening of the channel by tightening the same with a resilient force. Thetreatment tool 110 is retained by the resiliently tightening force of the ring-shapedresilient member 135 and hence follows the movement of theextremity member 132. However, the force that retainstreatment tool 110 is such that when theinsertion portion 110 a of thetreatment tool 110 is pushed and pulled from the proximal side, only thetreatment tool 110 can move against the retaining force of the ring-shapedresilient member 135. It is also possible to retain thetreatment tool 110 with a force of a strength that cannot move thetreatment tool 110. - The above-described
introduction guide tube 130 can also be used as the above-described introduction guide tube and as a member for introducing the treatment tool as a matter of course, and it can also be applied to a unit form in which a plurality of theintroduction guide tubes 130 are joined so that the supporting forces exerted to the movable sections of a plurality of theintroduction guide tubes 130 are mutually invalidated at the common fulcrum. - Referring now to
FIG. 20 toFIG. 26 , another modification of the aforementioned introduction guide tube will be described as an eighth embodiment of the present invention. As shown inFIG. 20 , theintroduction guide tube 140 includes asoft insertion portion 141 and afinal operating element 142. Thefinal operating element 142 includes agrip portion 143, a plurality ofangle knobs 145 for bending a bending portion 144 (seeFIG. 21 ) of theinsertion portion 141, aninsertion port 147 in communication with a channel 146 (seeFIG. 22 ) of theinsertion portion 141, a treatmenttool rotating knob 149 for operating a treatment toolrotating mechanism 148 described later. Theangle knob 145 and the treatmenttool rotating lever 149 are provided withbrake knobs final operating element 142 is provided with anoperating button 137 for performing operations such as suction or air supply using thechannel 146. - As shown in
FIG. 25 andFIG. 26 , by inserting aninsertion portion 150 a of atreatment tool 150 such as the grip forceps from theinsertion port 147 of thefinal operating element 142 of theintroduction guide tube 140 through thechannel 146, thetreatment tool 150 is projected from a distal end opening of thechannel 146 into the body cavity. - The treatment tool
rotating mechanism 148 is assembled in the distal portion of theinsertion portion 141, and is configured as shown inFIG. 21 toFIG. 26 . In other words, a cylindrical connectingmouth ring 153, to which the distal end of asoft tube 152 defining thechannel 146 is connected, is provided in adistal portion 151 of theinsertion portion 141 of theintroduction guide tube 140, and the connectingmouth ring 153 is fixed to a supportingmember 154 fixed to thedistal portion 151. As shown inFIG. 22 , a cylindrical rotatingmember 156 is disposed along the connectingmouth ring 153 and adistal wall 155 of thedistal portion 151, and the rotatingmember 156 is rotatably supported about an elongated shaft of thechannel 146 or a shaft extending in parallel with the elongated shaft. The rotatingmember 156 opens at the distal surface of thedistal portion 151 of theintroduction guide tube 140 and forms a distal end opening 146 a of thechannel 146. - As shown in
FIG. 22 , abevel gear 157 as a driven gear is coaxially formed on the outer periphery of the rotatingmember 156. Abevel gear 158 as a drive gear engages thebevel gear 157. The shaft center of thebevel gear 158 is disposed orthogonally to the shaft center of thebevel gear 157 as the driven gear. Thebevel gear 158 as the drive gear is rotatably supported in the distal portion of theinsertion portion 141. Apinion gear 159 is coaxially and integrally formed with thebevel gear 158. As shown inFIG. 23 , a pair ofracks pinion gear 159 so as to engage therewith. Therespective racks introduction guide tube 140. - Distal ends of operating
wires respective racks wires racks pinion gear 159 rotates. - The operating
wires tool rotating knob 149 provided on thefinal operating element 142 to move theracks - Then, by the movement of the
racks pinion gear 159 rotates together with thebevel gear 158, and thebevel gear 158 rotates thebevel gear 157 as the driven gear. When thebevel gear 157 as the driven gear rotates, the rotatingmember 156 rotates together. - On the other hand, as shown in
FIG. 22 andFIG. 25 , aresilient member 165 formed of rubber or the like is provided at the peripheral edge of the distal end of the rotatingmember 156. Theresilient member 165 is exposed outward from thedistal portion 151 of theinsertion portion 141 of theintroduction guide tube 140. Theresilient member 165 serves as anchoring member which abuts against the distal end of the treatment tool inserted through thechannel 146, and anchors itself with respect to the distal end of the treatment tool by a frictional force against the treatment tool or deformation thereof, so as to cause the treatment tool to rotate with the rotatingmember 156. The treatment tool inserted through theintroduction guide tube 140 can be rotated by the treatment toolrotating mechanism 148. - When the
treatment tool 150 such as the grip forceps is inserted through theintroduction guide tube 140 for use, as shown inFIG. 25 andFIG. 26 , the operator inserts aninsertion portion 150 a of thetreatment tool 150 through thechannel 146 and allows adistal grip member 150 b of thetreatment tool 150 to project from the distal end of theintroduction guide tube 140. - Then, the operator opens the
distal grip member 150 b by operating alink mechanism 168 for operating an openable andclosable link mechanism 168, causes thedistal grip member 150 b to retract slightly in the opened state, and presses the member of thelink mechanism 168 against theresilient member 165 for anchoring. In other words, thedistal grip member 150 b of thetreatment tool 150 is joined with the rotatingmember 156 by a frictional force or an engaging force between theresilient member 165 and thelink mechanism 168, so as to rotate with the rotatingmember 156. - When changing the direction of the
treatment tool 150 by rotating the same, thedistal grip member 150 b of thetreatment tool 150 can be rotated with the rotatingmember 156. In other words, since thedistal grip member 150 b of thetreatment tool 150 is rotated directly, accurate relation with respect to the amount of rotation can be maintained, and thedistal grip member 150 b of thetreatment tool 150 can be rotated quickly. It is also possible to twist theelongated insertion portion 150 a of thetreatment tool 150 from the proximal side to assist the rotation of thedistal grip member 150 b of thetreatment tool 150. - Referring now to
FIG. 27 andFIG. 28 , still another modification of the introduction guide tube provided with the treatment tool rotating mechanism as described above will be described as a ninth embodiment of the invention. - As shown in
FIG. 27 , in the treatment tool rotating mechanism of anintroduction guide tube 170, the driven gear to be provided on the outer periphery of the rotatingmember 156 is aspur gear 171. Aspur gear 172 as a drive gear engages thespur gear 171. Thespur gear 172 as the drive gear is supported in the distal portion of theinsertion portion 141. A distal end of atorque transmission wire 173, which is configured to transmit rotational torque, is connected to a shaft of thespur gear 172. - Then, the operator rotates the
spur gear 172 as the drive gear and thespur gear 171 as the driven gear by twisting and rotating thetorque transmission wire 173 from the proximal side. When thespur gear 171 rotates, the rotatingmember 156 rotates together therewith. - As shown in
FIG. 28 , arotating lever 175 is provided on thefinal operating element 142 of theintroduction guide tube 170 so that thetorque transmission wire 173 is rotated by operating therotating lever 175. The direction of operation of the operating mechanism on the proximal side by therotating lever 175 is substantially parallel to the axis of rotation of the rotating mechanism at the distal end of the insertion portion. - The structure of the treatment tool rotating mechanism other than those described here may be substantially the same as the above-described embodiments.
- In this case as well, as in the above-described embodiments, the treatment tool rotating mechanism can be used for changing the direction of rotation of the
treatment tool 150. Since the driven gear is thespur gear 171 and the drive gear is thespur gear 172, and thespur gear 172 is rotated by thetorque transmission wire 173, a mechanism to be built in the distal portion of theintroduction guide tube 170 can be simplified. - Although the treatment tool operating mechanism for moving the treatment tool in the fore-and-aft direction or for rotating the same is such that the treatment tool is built in the distal portion of the introduction guide tube in the aforementioned description, it is also possible to combine both configurations to obtain a form in which the treatment tool operating mechanism for moving the treatment tool in the fore-and-aft direction and rotating the same.
- As described above, in the introduction guide tube in a form including the treatment tool operating mechanism which moves the treatment tool in the fore-and-aft direction or/and rotating the same, the following problems can be solved.
- In other words, when the direction or the position of the distal portion of the treatment tool introduced into the body cavity via the soft introduction guide tube is changed as in the related art, the proximal portion of the treatment tool is twisted or moved in the fore-and-aft direction on the proximal side of the introduction guide tube.
- However, the insertion portion of the treatment tool introduced via the interior of the introduction guide tube is elongated and flexible, and the insertion portion of the treatment tool comes into contact with the inner wall of the introduction guide tube at many points and often snakes its way therein. In particular, when the bending portion of the introduction guide tube is bent, the insertion portion of the treatment tool comes into a pressing contact with the inner wall of the introduction guide tube at the bending portion.
- Under such a circumstance, even when the operator pushes and pull s the insertion portion of the treatment tool positioned in the introduction guide tube from the proximal side, or adds the rotating operation, the operating force is apt to be absorbed en route by snaking or twisting of the insertion portion of the treatment tool, and hence the operating force from the proximal side is hardly transmitted to the distal portion of the treatment tool.
- However, as described above, in a form in which the operating mechanism for moving the treatment tool in the fore-and-aft direction or the operating mechanism for rotating the treatment tool is built in the distal portion of the introduction guide tube, such disadvantages can be eliminated, and quick operation is enabled while maintaining the accurate relation with respect to the operating amount. Also, a complicated operation such as to operate with an operator's hand removed from the final operating element of the introduction guide tube or the endoscope as in a case where the operator pushes or pulls the proximal portion of the treatment tool by hand is not necessary, and hence the operation of the treatment tool in the fore-and-aft direction can be performed easily without the operator removing his/her hand from the final operating element.
- While there has been shown and described what is considered to be preferred embodiments of the invention, it will, of course, be understood that various modifications and changes in form or detail could readily be made without departing from the spirit of the invention. It is therefore intended that the invention be not limited to the exact forms described and illustrated, but should be constructed to cover all modifications that may fall within the scope of the appended claims.
Claims (23)
1. An endoscope therapeutic device for introducing a treatment tool into a body cavity and performing treatment by the treatment tool under observation by an endoscope, the endoscope therapeutic device comprising:
a plurality of introduction guide tubes for introducing the treatment tool into a body cavity, each of the plurality of introduction guide tubes comprise an insertion portion, one or more bending portions provided at a distal side of the insertion portion and being bendable by a bending operation; and
a mutual joint for joining at least two of the plurality of introduction guide tubes disposed at a position proximal to the distal-most bending portions of each of the at least two introducing guide tubes.
2. An endoscope therapeutic device according to claim 1 , wherein all of the plurality of the introduction guide tubes are joined at the position proximal to the distal-most bending portion of each of the introduction guide tubes.
3. An endoscope therapeutic device according to claim 1 , wherein the mutual joint of the at least two introduction guide tubes is achieved by a configuration in which at least part of the respective insertion portions of the at least two introduction guide tubes are integrally joined.
4. An endoscope therapeutic device according to claim 1 , wherein the mutual joint of the at least two introduction guide tubes comprises a joint tool.
5. An endoscope therapeutic device according to claim 4 , wherein the joint tool comprises a mechanism for resiliently deforming at least part of the joint tool for joining the at least two introduction guide tubes.
6. An endoscope therapeutic device according to claim 1 , wherein the mutual joint comprises an over tube for receiving introduction guide tubes to be joined inserted therethrough and tightening a member inserted through the distal part.
7. An endoscope therapeutic device according to claim 1 , wherein at least one of the plurality of introduction guide tubes is provided at the distal portion thereof with an operating mechanism for retaining a distal portion of a treatment tool inserted through the introduction guide tube and for moving the treatment tool.
8. An endoscope therapeutic device for introducing a treatment tool into a body cavity and performing treatment by the treatment tool under observation by an endoscope, the endoscope therapeutic device comprising:
the endoscope comprising an insertion portion and a bending portion;
at least one introduction guide tube for introducing the treatment tool into a body cavity, the introduction guide tube comprising an insertion portion and at least one bending portion provided at a distal side of the insertion portion of the at least one introduction guide tube, the bending portion of the introduction guide tube being bendable by a bending operation; and
a joint tool for detachably joining the insertion portion of the endoscope and a portion of the at least one introduction guide tube at a position proximal to the distal-most bending portion of the at least one introduction guide tube.
9. An endoscope therapeutic device according to claim 8 , wherein the at least one introduction guide tube comprises a plurality of introduction guide tubes, wherein the plurality of the introduction guide tubes are mutually joined at the position proximal to the distal most bending portion of each of the introduction guide tubes.
10. An endoscope therapeutic device according to claim 9 , wherein the joint tool also achieves a mutual joint between the plurality of introduction guide tubes.
11. An endoscope therapeutic device according to claim 8 , wherein the joint tool comprises an over tube for receiving the endoscope and the at least one introduction guide tube inserted therethrough, and the over tube is mounted so that a relative position of the introduction guide tube in a radial direction does not change at a fixed portion in the vicinity of a distal portion of the over tube.
12. An endoscope therapeutic device according to claim 11 , further comprising at least one suction tube inserted through the over tube, wherein the over tube is further mounted so that the relative position of the at least one suction tube in the radial direction does not change at the fixed portion.
13. A therapeutic instrument joint tool for mutually joining therapeutic instruments each having at least one bending portion and being configured for introduction into a body cavity, the therapeutic instrument joint tool being configured to mutually join the therapeutic instruments at a position proximal to the distal-most bending portions of each of the therapeutic instruments to be joined.
14. An over tube comprising:
a bending portion being bendable by a bending operation;
an insertion portion for inserting a plurality of introduction guide tubes therein; and,
a fixed portion for mutually fixing the plurality of introduction guide tubes at a position in the vicinity of and proximal to the bending portions of each of the plurality of introduction guide tubes.
15. An over tube according to claim 14 , wherein the insertion portion has a plurality of insertion guide openings, corresponding to the plurality of introduction guide tubes so that the plurality of the introduction guide tubes can be respectively inserted therein.
16. An introduction guide tube for receiving a treatment tool used for treatment in a body cavity inserted therethrough, the introduction guide tube comprising:
an operating mechanism provided at a distal portion of the introduction guide tube for retaining a distal end of the treatment tool inserted through the introduction guide tube and for moving the distal end of the treatment tool.
17. An introduction guide tube according to claim 16 , wherein the operating mechanism comprises an engaging member that engages part of an insertion portion of the treatment tool.
18. An introduction guide tube according to claim 17 , further comprising a mechanism for selectively engaging and disengaging the engaging member, the mechanism being actuated from a proximal side of the introduction guide tool.
19. An introduction guide tube according to claim 16 , wherein the operating mechanism is a moving mechanism for moving the distal end of the treatment tool in a fore-and-aft direction.
20. An introduction guide tube according to claim 16 , wherein the operating mechanism is a rotating mechanism for rotating the distal end of the treatment tool.
21. An introduction guide tube according to claim 20 , wherein the rotating mechanism rotates in a direction about an axis of rotation corresponding to a longitudinal axis of a treatment tool insertion channel of the introduction guide tube or an axis extending in parallel with the longitudinal axis.
22. An introduction guide tube according to claim 20 , wherein the rotating mechanism rotates in a same direction as an operating direction of the operating mechanism on the proximal side of the introduction guide tube.
23. An introduction guide tube according to claim 20 , wherein the rotating mechanism is operated such that an operating direction of the operating mechanism on a proximal side of the introduction guide tube is substantially parallel with an axis of rotation of the rotating mechanism.
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JP2004118182A JP2005296412A (en) | 2004-04-13 | 2004-04-13 | Endoscopic treatment apparatus |
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Also Published As
Publication number | Publication date |
---|---|
EP1985246A1 (en) | 2008-10-29 |
JP2005296412A (en) | 2005-10-27 |
EP1586275A2 (en) | 2005-10-19 |
EP1985246B1 (en) | 2012-02-01 |
EP1586275B1 (en) | 2013-05-29 |
EP1586275A3 (en) | 2005-12-07 |
US8221306B2 (en) | 2012-07-17 |
US20100048992A1 (en) | 2010-02-25 |
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