Hahn et al., Glow Discharge Polymers as Coatings for Implanted Devices, John M. Dalton Research Center, University of MissouriColumbia and the Graduate Center for Materials Research, pp. 109-113 (1981).
He et al., Assessment of Tissue Blood Flow-Following Small Artery Welding with an Intraluminal Dissolvable Stent, Microsurgery, vol. 19, No. 3, pp. 148-152 (1999).
Hehrlein et al., Low-Dose Radioactive Endovascular Stents Prevent Smooth Muscle Cell Proliferation and Neointimal Hyperplasia in Rabbits, Circulation, vol. 92, No. 6, pp. 1570-1575 (Sep. 15, 1995). Helmus, Overview of Biomedical Materials, MRS Bulletin, pp. 33-38 (Sep. 1991).
Herdeg et al., Antiproliferative Stent Coatings: Taxol and Related Compounds,Semin. Intervent. Cardiol., vol. 3, pp. 197-199 (1998). Hollahan et al., Attachment of Amino Groups to Polymer Surfaces by Radiofrequency Plasmas, Journal of Applied Polymer Science, vol. 13, pp. 807-816 (1969).
Huang et al., Biodegradable Polymers Derived from Aminoacids, Macromol. Symp. 144, 7-32 (1999).
Impulse Jetting, About Us, http://www.impulsejetting.com/about. html, printed Dec. 18, 2000, 1 page.
Impulse Jetting, Our Technology, http://www.impulsejetting.com/ techl.html, printed Dec. 18, 2000, 1 page.
Inagaki et al., Hydrophilic Surface Modification of Polyethylene by No-Plasma Treatment, Adhesion Sci. Technol., vol. 4, No. 2, pp. 99-107 (1990).
Inoue et al., An AB block copolymer of oligo(methyl methacrylate) and poly(acrylic acid) for micellar delivery of hydrophobic drugs, Journal of Controlled Release, vol. 51, pp. 221-229 (1998). Itabashi et al., Electroless Deposited CoWB for Copper Diffusion Barrier Metal, International Interconnect Technology Conference, pp. 285-287 (2002).
Kataoka et al., Block Copolymer Micelles as Vehicles for Drug Delivery, Journal of Controlled Release vol. 24, pp. 119-132 (1993). Kawai et al., Physiologically Based Pharmacokinetics of Cyclosporine A: Extension to Tissue Distribution Kinetics in Rats and Scale-up to Human, The Journal of Pharmacology and Experimental Therapeutics, vol. 287, No. 2, pp. 457-468 (1998). Kelley et al., Totally Resorbable High-Strength Composite Material, Advances in Biomedical Polymers, vol. 35, pp. 75-85 (1987). Klocke et al, How Soil Holds Water (G90-964), http://ianrpubs.unl. edu/fieldcrops/g964.htm, printed Apr. 6, 2004, 9 pages. Konopka, In-Plane Moisture Transport in Nonwovens, Nonwovens Cooperative Research Center, NC State University, 56 pages. Kovarik et al., Pharmacokinetic and Pharmacodynamic Assessments of HMG-CoA Reductase Inhibitors When Coadministered with Everolimus, Journal of Clinical Pharmacology, vol. 42, pp. 222-228 (2002).
Kubies et al., Microdomain Structure Inpolylactide-block-poly(ethylene oxide) copolymer films, Biomaterials, vol. 21, pp. 529-536 (2000).
Kutryk et al., Coronary Stenting: Current Perspectives, a companion to the Handbook of Coronary Stents, 16 pages (1999). Lambert et al., Localized Arterial Wall Drug Delivery From a Polymer-Coated Removable Metallic Stent, Circulation, vol. 90, No. 2, pp. 1003-1011 (Aug. 1994).
Levy et al., Strategies For Treating Arterial Restenosis Using Polymeric Controlled Release Implants, Biotechnology and Bioactive Polymers, pp. 259-268 (1994).
Liermann et al., Prophylactic Endovascular Radiotherapy to Prevent Intimal Hyperplasia after Stent Implantation in Femoropopliteal Arteries, Cardiovascular and Interventional Radiology, vol. 17, pp. 12-16 (1994).
Liu et al., Drug Release Characteristics of Unimolecular Polymeric Micelles, Journal of Controlled Release, vol. 68, pp. 167-174 (2000).
Loeb et al., Parylene as a Chronically Stable, Reproducible Microelectrode Insulator, IEEE Transactions on Biomedical Engineering, Mar. 1977 (pp. 121-128).
Loh et al., Plasma Enhanced Parylene Deposition, Antec, pp. 1099-1103, 1991.
Machine Solutions, FFS700 MSI Balloon Form/Fold/Set Equipment(PTCA), FFS800 MSI Balloon Form/Fold/Set Equipment {PTA), http://machinesolutions.orgffs7_8.html, printed Nov. 21, 2003 (2 pgs.).
Machine Solutions, SC700 MSI Stent Crimping Equipment (PICA), SC800 MSI Stent Crimping Equipment (PTA), http://www. machinesolutions.org/sc7_8.html, printed Nov. 21, 2003, 2 pages. Malik et al., Development of an Energetic Ion Assisted Mixing and Deposition Process for TIN^and Diamondlike Carbon Films, Using a Co-axial Geometry in Plasma Source Ion Implantation, J. Vac. Sci. Technol. A, vol. 15, No. 6, pp. 2875-2879 (Nov./Dec. 1997). Malik et al., Overview of plasma source ion implantation research at University of Wisconsin-Madison, J. Vac. Sci. Technol. B, No. 12, vol. 2, pp. 843-849 (Mar./Apr. 1994).
Malik et al., Sheath dynamics and dose analysis for planar targets in plasma source ion implantation, Plasma Sources Sci. Technol. vol. 2, pp. 81-85 (1993).
Marconi et al., Covalent bonding of heparin to a vinyl copolymer for biomedical applications, Biomaterials, vol. 18, No. 12, pp. 885-890 (1997).
Matsumaru et al., Embolic Materials For Endovascular Treatment of Cerebral Lesions, J. Biomater. Sci. Polymer Edn., vol. 8, No. 7, pp. 555-569 (1997).
Mauduit et al., Hydrolytic degradation of films preparedfrom blends of high and low molecular weight poly{DL-lactic acid)s, J. Biomed. Mater. Res., vol. 30, pp. 201-207 (1996).
Middleton et al., Synthetic biodegradable polymers as orthopedic devices, Biomaterials, vol. 21, pp. 2335-2346 (2000). Miyazaki et al., Antitumor Effect of Implanted Ethylene- Vinyl Alco- hol Copolymer Matrices Containing Anticancer Agents on Ehrlich Ascites Carcinoma and P388 Leukemia in Mice, Chem. Pharm. Bull., Vol. 33, No. 6, pp. 2490-2498 (1985). Miyazawa et al., Effects of Pemirolast and Tranilast on Intimal Thickening After Arterial Injury in the Rat, J. Cardiovasc. Pharmacol., vol. 30, No. 2, pp. 157-162 (1997). Moody, Vacuum Coating Ultrasonic Transducers, 1 page, Sensors (Dec. 1993).
Muller et al., Advances in Coronary Angioplasty: Endovascular Stents, Coronary Artery Disease, vol. 1, No. 4., pp. 438-448 (Jul./Aug. 1990).
Neimark et al., Hierarchical Pore Structure and Wetting Properties of Single-Wall Carbon Nanotube Fibers, Nano Letters, vol. 3, No. 3, pp. 419-423 (2003).
Nichols et al., Electrical Insulation of Implantable Devices by Composite Polymer Coatings, ISA Transactions, vol. 26, No. 4, pp. 15-18 (1987).
Nordrehaug et al., A Novel Biocompatible Coating Applied to Coronary Stents, EPO Heart Journal 14, p. 321 (P1694), Abstr. Suppl. (1993).
Nova TranTM Custom Coating Services, Parylene Conformal Coating, 8 pages (no date).
Ohsawa et al., Preventive Effects of an Antiallergic Drug, Pemirolast Potassium, on Restenosis After Percutaneous Transluminal Coronary Angioplasty, American Heart Journal, vol. 136, No. 6, pp. 1081-1087 (Dec. 1998).
Olson, Parylene, a Biostabel Coating for Medical Applications, Specialty Coating Systems, Inc. Nova TranTM Parylene Coating Services (no date).
Ozaki et al., New Stent Technologies,, Progress in Cardiovascular Diseases, vol. XXXIX, No. 2, pp. 129-140 (Sep./Oct. 1996). Para Tech Coating Company, Galxyl, Parylene Coatings by Para Tech, 1 page (no date).
Para Tech Coating Company, Lab Top® Parylene Deposition System, 2 pages (no date).
Pechar et al., Polyethylene glycol) Multiblock Copolymer as a Carrier of Anti-Cancer Drug Doxorubicin, Bioconjucate Chemistry vol. 11, No. 2, pp. 131-139 (Mar./Apr. 2000). Peng et al., Role ofpolymers in improving the results of stenting in coronary arteries, Biomaterial, vol. 17, pp. 685-694 (1996). Peuster et al., A novel approach to temporary stenting: degradable cardiovascular stents produced from corrodible metal-results 6-18 months after implantation into New Zealand white rabbits, Heart vol. 86, pp. 563-569 (2001).
Pietrzak et al., Bioabsorbable Fixation Devices: Status for the Craniomaxillofacial Surgeon, Journal of Craniofacial Surgery, vol. 8, No. 2, pp. 92-96 (1997).
Pietrzak et al., Bioresorbable Implants—Practical Considerations, Bone, vol. 19, No. 1, Supplement, pp. 109S-119S (July 1996). Poncin-Epaillard et al., Reactivity of a Polypropylene Surface Modified in a Nitrogen Plasma, Plasma Surface Modification of Polymers pp. 167-180 (1994).
Redman, Clinical Experience with Vasovasostomy Utilizing Absorbable Intravasal Stent, Urology, vol. XX, No. 11, pp. 59-61 (Jul. 1982).
Refraction Techonolgies, Corp., Fine Bubble Diffusers, 2 pages (do date).
Refraction Techonolgies, Corp., Refractron Advanced Porous
Ceramic Product Capabilities, http://www.refractron.com/ecom/sp/
cat=Product+Information, printed Apr. 6, 2004, 3 pages.
Rust et al., The Effect of Absorbable Stenting on Postoperative
Stenosis of the Surgically Enlarged Maxillary Sinus Ostia in a
Rabbit Animal Model, Archives of Otolaryngology, Head and Neck
Surgery, vol. 122, pp. 1395-1397 (Dec. 1996).
Sadhir et al., The Adhesion of Glow-Discharge Polymers, Silastic
And Parylene to Implantable Platinum Electrodes: Results of Tensil
Pull tests After Exposure to Isotonic Sodium Chloride, Biomaterials,
vol. 2, pp. 239-243 (Oct. 1981).
Saotome, et al., Novel Enzymatically Degradable Polymers Comprising a-Amino Acid, 1,2-Ethanediol, and Adipic Acid, Chemistry Letters, pp. 21-24, (1991).
Schatz, A View of Vascular Stents, Circulation, vol. 79, No. 2, pp. 445-457 (Feb. 1989).
Scheuer et al., Model of plasma source ion implantation in planar, cylindrical, and spherical geometries, J. Appl. Phys., vol. 67, No. 3, pp. 1241-1245 (Feb. 1990).
Schmidt et al., Long-term Implants of Parylene-C Coated Microelectrodes, Medical & Biological Engineering & Computing, pp. 96-101 (Jan. 1988).
Serkova et al., Tissue Distribution and Clinical Monitoring of the Novel Macrolide Immunosuppressant SDZ-RAD and its Metabolites in Monkey Lung Transplant Receipients: Interaction with Cyclosporine, The Journal of Pharmacology and Experimental Therapeutics, vol. 294, No. 1, pp. 323-332 (2000). Serruys et al., / Like the Candy, I Hate the Wrapper; the 32P Radioactive Stent, Circulation, vol. 101, pp. 3-7 (Jan. 2000). Shamim et al., Measurements of Spatial and Temporal Sheath Evolution for Spherical and Cylindrical Geometries in Plasma Source Ion Implantation, J. Appl. Phys., vol. 69, No. 5, pp. 2904-2908 (Mar. 1991).
Shigeno, Prevention of Cerebrovascular Spasm By Bosentan, Novel Endothelin Receptor, Chemical Abstract 125:21230 (1996). Sono Tek Corporation, AccuMistTMfor Single Stent Coating Appli- cations, http://www.sono-tek.com/biomedical/accumist_stent. html, printed Aug. 2, 2005, 3 pages.
Sono Tek Corporation, MediCoatTM DES 1000, Benchtop Stent Coating System, http://www.sono-tek.com/biomedical/ medicoat_standalone.html, printed Aug. 2, 2005, 4 pages. Sono Tek Corporation, MicroMist for Stent Coating, http://www. sono-tek.com/biomedical/micromist stent.html, printed Aug. 2, 2005, 3 pages.
Specialty Coating Systems, Inc., The Parylene Press, 4 pages (Summer 1993).
Specialty Coating Systems, Inc., The Parylene Press, 6 pages (Spring 1993).
Specialty Coating Systems, Inc., The Parylene Press, 7 pages (Winter 1992).
Specialty Coating Systems, Parylene and Nova TranTM Parylene Coating Services, for Unmatched Conformal Coating Performance, 21 pages (no date).
Specialty Coating Systems, Parylene, a Biostable Coating for Medical Applications, 6 pages (no date).
Specialty Coating Systems, Repair and Recoating of Parylene Coated Printed Circuit Boards, 15 pages (no date). Straube, Moisture, Materials, & Buildings, HPAC Engineering, pp. 2-7 (no date).
Taher, Capillary interaction between a small thin solid plate and a liquid, Mechanical and Industrial Engineering, University of Illinois at Urbana-Champaign, 4 pages (undated).
Tamai et al., Initial and 6-Month Results of Biodegradable Poly-ILactic Acid Coronary Stents in Humans, Circulation, vol. 102, pp. 399-404 (2000).
Trident, Inc., http://www.tridentintl.com/subbody.html, printed Dec. 18, 2000, 1 page.
Trident, Inc., Product Lines, http://www.tridentintl.com/products
apps/ultrajet.html, printed Dec. 18, 2000, 3 pages.
Tsuji et al., Biodegradable Polymeric Stents, Current Interventional
Cardiology Reports vol. 3, pp. 10-17 (2001).
Union Carbide Adhesion Promoters, Union Carbide A-174 Silane, 5
pages (Jan. 1968).
Union Carbide Electronics Division, Parylene Environmentally Compatible Conformal Coatings for Electronic Components Assem- blies and Precision Parts, 14 pages (no date). Union Carbide, Abrasion Resistance of Parylene and Other Con- formal Circuit Board Coatings, Parylene Products, No. 4, 13 pages (Oct. 1977).
Union Carbide, Adhesion Promotion Systems for Parylene, Parylene Products, No. 15, Revision 1, 8 pages (Oct. 1977). Union Carbide, Adhesion Promotion Systems for Parylene, Tech- nology Letter, No. 15, 13 pages (Oct. 1975). Union Carbide, Evaluation of Parylene and Other Pellicles as Beam Splitters, Parylene Products, No. 8, Edited, 19 pages (Oct. 1977). Union Carbide, Fluorescent Parylene Coatings, Parylene Products, No. 7 Revision 1, 8 pages (Oct. 1977).
Union Carbide, Fluorescent Parylene Coatings, Technology Letter, No. 7, 8 pages (Oct. 1973).
Union Carbide, Mechanical Protection Criteria for Thin Conformal Coatings, Parylene Products, No. 3, 21 pages (Oct. 1977). Union Carbide, Method for Repair and Patching of Parylene Coated Printed Circuit Boards, Parylene Products, No. 2 Revision
I, 9 pages (Oct. 1977).
Union Carbide, Microencapsulation by Vapor Deposition, Parylene Products, No. 6, 12 pages (Oct. 1977).
Union Carbide, MIL 146058, Qualification of Parylene N C, and D, Parylene Products, No. 1 Revision 2, 8 pages (Oct. 1977). Union Carbide, Parylene Bibliography, Parylene Products, No. 5, Revision 4, 17 pages (Jan. 18, 1982).
Union Carbide, Parylene Conformal Coatings for Hybrid Microelectronics, Parylene Products, No. 9, 23 pages (Oct. 1973). Union Carbide, Parylene Pellicles for Space Applications, Parylene Products, No. 10, 50 pages (Oct. 1977).
Union Carbide, ParylenePyrolysis Kinetics, Parylene Products, No.
II, 12 pages (Oct. 1977).
Union Carbide, Parylene Pyroly sis Kinetics, Technology Letter, No. 11, 12 pages (May 1974).
Union Carbide, Parylene Removal with Oxygen P/asmasParylene Products, No. 18, 7 pages (Aug. 1977).
Union Carbide, Printed Circuit Board Masking Techniques for Use
with Parylene, No. 14, Revision 1, 11 pages (Oct. 1977).
Union Carbide, Solvent Resistance of the Parylenes, Parylene
Products, No. 12, Revision 1, 5 pages (Oct. 1977).
Union Carbide, The Selective Removal of Parylene By Plasma
Etching, No. 13, Revision 1, 7 pages (Oct. 1977).
Union Carbide, Thermal Endurance of the Parylenes in Air,
Parylene Products, No. 16, 4 pages (Mar. 1976).
Union Carbide, Vapor Phase Adhesion Promotion Systems,
Parylene Products, No. 17, Revision 1, 11 pages (Oct. 1977).
van Beusekom et al., Coronary Stent Coatings, Coronary Artery
Disease, vol. 5, No. 7, pp. 590-596 (Jul. 1994).
van der Giessen et al., "Edge Effect" of32P Radioactive Stents is
Caused by the Combination of Chronic Stent Injury and Radioactive
DoseFalloff, Circulation, vol. 104, pp. 2236-2241 (Oct. 30, 2001).
Vapor Inc., Vapore-JetTM Capillary Pump—How it Works, http://
www.vapore.com/tech_howto.htm, printed Aug. 13, 2003, 2 pages.
von Recum et al., Degradation of polydispersed poly(L-lactic
acid)to modulate lactic acid release, Biomaterials, vol. 16, pp.
441-445 (1995).
Wiesendanger et al., Contributions of Scanning Probe Microscopy and Spectroscopy to the Investigation and Fabrication of Nanometer-Scale Structures, J. Vac. Sci. Technol. B, vol. 12, No. 2, pp. 515-529 (Mar./Apr. 1994).
Wilensky et al., Methods and Devices for Local Drug Delivery in Coronary and Peripheral Arteries, Trends Cardiovasc. Med., vol. 3, No. 5, pp. 163-170 (1993).
Wong et al., An Update on Coronary Stents, Cardio, 8 pages (Feb. 1992).
World Precision Instruments, Inc., Nanoliter Injector, http://www. wpiinc.com/WPI_Web/Microinjection/Nanoliter_Injector.html, printed Jun. 10, 2005, 3 pages.
World Precision Instruments, Inc., Nanoliter Injector, http://www. wpi-europe.com/products/microinjection/nanoliter.htm printed Jun. 10, 2005, 2 pages.
World Precision Instruments, Inc., Pneumatic PicoPumps, http:// www.wpieurope.com/products/microinjection/picopumps.htm, printed Jun. 10, 2005, 4 pages.
World Precision Instruments, Inc., Pneumatic PicoPumps, http:// www.wpiinc.com/WPI_Web/Microinjection/ Pneumatic_PicoPumps.html, printed Jun. 10, 2005, 4 pages. Yau et al., Modern Size-Exclusion Liquid Chromatography, Wiley- Interscience Publication, 9 pages (1979).
Yokoyama et al., Characterization of physical entrapment and chemical conjugation of adriamycin in polymeric micelles and their design for in vivo delivery to asolid tumor, Journal of Controlled Release, vol. 50, pp. 79-92 (1998).
Yuen et al., Tissue response to potential neuroprosthetic materials implanted subdurally, Biomaterials, vol. 8, pp. 57-62 (Mar. 1987).
Zhmud et al., Dynamics of Capillary Rise, Journal of Colloid and Interface Science, vol. 228, pp. 263-269 (2000). Zimarino et al., Analysis of Stent Edge Restenosis with Different Forms ofBrachytherapy, The American Journal of Cardiology, vol. 89, pp. 322-325 (Feb. 1, 2002).
Zylberman et al., Comparative Study of Electroless Co(W,P) and Co(Mo,P) Thin-Films for Capping and Barrier Layers for Cu Metallization, 2002 Advanced Metallization Conference, 2 pages (no date).
U.S. Appl. No. 10/255,913, filed Sep. 26, 2002, Tang et al. U.S. Appl. No. 10/304,669, filed Oct. 25, 2002, Madriaga et al. U.S. Appl. No. 10/317,435, filed Dec. 11, 2002, Hossainy et al. U.S. Appl. No. 10/322,255, filed Dec. 17, 2002, Chen et al. Katsarava et al., Amino Acid-Based Bioanalogous Polymers, Synthesis, and Study of Regular Poly(ester amide)s Based on Bis(ctamino acid)ct, w-Alkylene Diesters, and Aliphatic Dicarbolic Acids, Journal of Polymer Science, Part A; Polymer Chemistry, vol. 37, 391-407 (1999).
Refraction Technologies Corp., http://www.refractron.com/ecom/ sp/cat=Custom+Applications, printed Jun. 24, 2003, 1 page. Shamim et al., Measurement of electron emission due to energetic ion bombardment in plasma source ion implantation, J. Appl. Phys., vol. 70, No. 9, pp. 4756-4759 (Nov. 1991).
World Precision Instruments, Inc., http://www.wpiinc.com/ WPI_Web/Pumps/pneumatic_Fig.gif, printed Sep. 30, 2002, 1 page.
* cited by examiner
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