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Ogata et al., “A novel anti-tumor agent, polyoxomolybdate induces apoptotic cell death in AsPC-1 human pancreatic cancer cells,” Biomedicine & Pharmacotherapy, 2005, 59: 240-244.

Onuma et al., “Everolimus-eluting bioabsorbable stent,” Euro PCR09, May 22, 2009, pp. 1-28.

Ormiston et al., “Bioabsorbable Coronary Stents,” Circulation Cardiovasc Intervent, vol. 2, 2009, pp. 255-260.

Ou et al., “Protective effects of eugenol against oxidized LDL-induced cytotoxicity and adhesion molecule expression in endotl1elial cells,” Food Chem. Toxicol., 2006, 44:1485-1495.

Ouerd et al., “Reactivity of Titanium in Physiolgoical Medium-I. Electrochemical Characterization of the Metal/Protein Interface,” Journal ofthe Electrochemical Society, vol. 154, No. 10, 2007, pp. 593-601.

Oyane et al., “Preparation and assessment of revised simulated body fluids,” Wiley Periodicals, Inc., 2003, pp. 188-195. Paliwoda-Porebska et al., “On the development of polypyrrole coatings with self-healing properties for iron corrosion protection,” Corrosion Science, 2005,47: 3216-3233.

Park et al., “Microstructural change and precipitation hardening in melt-spun Mg-X-Ca alloys,” Science and Technology of Advanced Materials, 2001, 2:73-78.

Peeters et al., “Preliminary Results after Application of Absorbable Metal Stents in Patients with Critical Limb Ischemia,” J Endovasc Ther, 2005, 12:1-5.

Peeters, et al., “Preliminary Data on Absorbable Metal Stents,” MEET2006, Jun. 2006, pp. 1-30.

Peuster et al. “Long-term biocompatibility of a corrodible peripheral iron stent in the porcine of descending aorta,” Biomaterials, 2006, 4955-4962.

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, 2001, 86(5):563-569.

Peuster et al., “Are resorbable implants 116 about to become a reality,” Cardiol Young, 2006, 16:107-116.

Pinto Slattow et al., “Optical coherence tomography and intravascular ultrasound imaging of bioabsorbable magnesium stent degradation in porcine coronary arteries,” Cardiovascular Revascularization Medicine 9, (2008) pp. 248-254.

Prasse et al., “Electric Anisotropy of Carbon Nanofibre/Epoxy Resin Composites Due to Electric Field Induced Alignment,” Composites Science and Technology, 2003, 63:1835-1841.

Qasem et al., “Kinetics of paclitaxel 2‘-N-methylpyridinium mesylate decomposition,” AAPS PharmSciTech, 2003, 4(2), Article 21, 8 pages.

Quinard et al., “Development of metal/polymer mixtures for rr1icro powder injection moulding,” 10th ESAFORM Conference on Material Forming, 2007, pp. 933-939.

Qureshi et al., “The emerging role of iron, zinc, copper, magnesium and selenium and oxidative stress in health and diseases,” Biogenic Amines, vol. 19, No. 2, 2005, pp. 147-169.

Ramar1 et al., “Laser assisted modification of surface microstructure for localised corrosion resistance of magnesium alloys,” Surface Engineering, 2007, 23(2): 107-111.

Ratnam et al., “Role of antioxidants in prophylaxis and therapy: A pharmaceutical perspective,” J Controlled Release, 2006, 113 : 1 89207.

Reece et al., “Metal transport studies on inherently conducting polymer membrances containing cyclodextrin dopants,” Journal of Membrane Science, 2005, 249: 9-20.

Remskar et al., “Self-Assembly of Subnanometer-Diameter SingleWall MoS2 Nanotubes,” Science, 2001, 292:479-481.

Ren et al., “Variations of dose and electrode spacing for rat breast cancer electrochemical treatment,” Bioelectromagnetics, 2001, 22(3):205-211.

Rettig et al., “Composition of corrosion layers on a magnesium rare-earth alloy in simulated body fluids,” Journal of Biomedical Materials Research PartA, Oct. 18, 2006, pp. 359-369.

Rettig et al., “Corrosion resistance studies on grain-boundary etched drug-eluting Stents,” J Mater Sci.‘ Mater Med., 2007, vol. 18, pp. 1377-1387.

Rettig et al., “Time-dependent electrochemical characterization of the corrosion of a magnesium rare-earth alloy in simulated body fluids,” Journal of Biomedical Materials Research Part A, 2007, 167-175.

Rezwan et al., “Biodegradable and bio active porous polymer/inorganic composite scaffolds for bone tissue engineering,” Biomaterials, 2006, 27:3413-3431.

Rhule et al., “Polyoxometalates in Medicine,” Chem. Rev., 1998, 98:327-357.

Rinkevich et al., “Regeneration of Amputated Avian Bone by a Coral
Skeletal Implant,” Biol. Bull., vol. 197, Aug. 1999, pp. 11-13.
Rivers et al., “Synthesis of a novel, biodegradable electrically con-
ducting polymer for biomedical applications,” Advanced Functional
Materials, 2002, 12: 33-37.

Russell-Stevens et al., “The effect of thermal cycling on the properties of a carbon fibre reinforced magnesium composite,” Materials Science and EngineeringA, 2005, 397: 249-256.

Rutledge et al., “Electrostatic Spinning and Properties of Ultrafine Fibers,” National Textile Center Annual Report, Nov. 2001, M01D22, pp. 1-10.

Ryan et al., “Fabrication methods of porous metals for use in orthopaedic applications,” Biomaterials, 2006, 27:2651-2670. Sastry et al., “DNA-Mediated Electrostatic Assembly of Gold Nanoparticles into Linear Arrays by a Simple Drop-Coating Procedure,”Appl. Phys. Lett., 2001, 78:2943-2945.

Satoh et al., “Effect of Antioxidants on Radical Intensity and Cytotoxic Activity of Eugenol,” Anticancer Res., 1998, 18:15491552.

Sawitowski et al., “Nanoporous Alumina Coatings for Medical Implants and StentsiRadiotherapy, Drug Delivery, Biological Compatibility,” Materials Research Society Symposium Proceedings, 1999, 581:523-528.

Sawitowski, “New Drug Delivery SystemsiExamples of Applied Nanotechnology,” VDE World Microtechnologies Congress, Sep. 25-27, 2000, Expo 2000, Hannover, Germany, Proveeds vol. 1, p. 343-346.

Sawyer et al., “Electrochemical Criteria in the Choice of Materials used in Vascular Prostheses,” Biophysical Mechanisms in Vascular Homeostasis and Intravascular Thrombosis, 1965, pp. 337-348. Schauer et al., “Protection of iron against corrosion with polyaniline primers,” Progress in Organic Coatings, 1998, 33: 20-27.

Schetky, “Shape Memory Alloys,” Encyclopedia of Chemical Technology (3rd ed.), 1982, John Wiley & Sons, 20:726.

Schinhammer et al., “Design strategy for biodegradable Fe-based alloys for medical applications,” Acta Biomaterialia, 2009, pp. 1-9. Schmidt et al., “Physiochemical changes in London clay adjacent to cast iron pipes,” 1AE G 2006, The Geological Society of London, Paper 313, 12 pages.

Schneider et al., “From functional core/ shell nanoparticles prepared via layer-by-layer deposition to empty nanospheres,” Nano Letters, 2004, 4: 1833-1839.

Schranz et al., “Bioabsorbable Metal Stents for Percutaneous Treatment of Critical Recoarctation of the Aorta in a Newborn,” Catheterization and Cardiovascular Interventions, vol. 67, 2006, pages 671-673.

Secheresse et al., “(Mo2O2X2)2+ (XIO,S), amagic building block for the design of wheel shaped metalates,” C.R. Chimie, 2005, 8: 19271938.

Serruys et al., “A bioabsorbable everolimus-eluting coronary stent system (ABSORB): 2-year outcomes and results from multiple imaging methods,” The Lancet, 2009, 373: 897-910.

Serruys, “Fourth Annual American College of Cardiology International Lecture,” Journal of the American College of Cardiology, 2006, vol. 47, No. 9, pp. 1754-1768.

Serruys, “Glimpse into the future: bioabsorbable stents-aiming to restore vascular integrityilntroduction & Obj ectives,”Euro PCR09, May 18, 2009, pp. 1-4.

Shaw, “Corrosion Resistance of Magnesium Alloys,” ASM Handbook vol. 13A.‘ Corrosion.‘ Fundamentals, Testing, and Protection. 2003, 5 pages.

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Shenoy et al., “Role of Chain Entanglements on Fiber Formation During Electrospinning of Polymer Solutions: Good Solvent, NonSpecific Polyrner-polymer Interaction Limit,” Polymer, 2005, 46:3372-3384.

Shevchenk et al ., “Porous Surface of NiTi Alloy Produced by Plasma Ion Implantation,” Institute of Ion Beam Physics and Materials Research, 2005, Strasbourg, 1 page.

Shevchenko, “Structure, composition and mechanical properties of porous layers produced by argon PIII,” Forschungszentrum Dresden, Oct. 2007, 8 pages.

Shi et al., “A novel electrically conductive and biodegradable composite made of polypyrrole nanoparticles and polylactide,” Biomaterials, 2004, 25:2477-2488.

Shieh et al. “Aqueous dispersions of magnetite nanoparticles with NH3 surfaces for magnetic manipulations of biomolecules and MRI contrast agents” Biomaterials, 2005 26: 7183-7191.

Shin, “Experimental Characterization of Electrospinning. the Electrically Forced Jet and Instabilities,” Polymer, 2001, 42:9955-9967. Sieber, et al., “Investigations on the passivity of iron in borate and phosphate buffers, pH 8.4,” Corrosion Science, vol. 48, 2006, pp. 3472-3488.

Singh et al., “Electrocatalytic Activity of Electrodeposited Composite Films of Polypyrrole and CoFe2O4 Nanoparticles Towards Oxygen Reduction Reaction,”ElectrochimicaActa, 2004, 49:4605-4612. Singh Ramar1 et al., “Laser assisted modification of surface microstructure for localised corrosion resistance of magnesium alloys,” Su/face Engineering, 2007, 23(2): 107-11 1.

Smith et al. “Patterning self-assembled monolayers” Progress in Surface Science. 2004. 75:1-68.

Song et al., “Galvanic corrosion of magnesium alloy AZ91D in contact with an aluminium alloy, steel and zinc,” Corrosion Science, 2004, 46:955-977.

Soto et al., “Amporphous magnesium nitride films produced by reactive pulsed lasar deposition,” Journal of Non-Crystalline Solids, 2004, 342: 65-69.

Stoclet et al., “Vascular protection by dietary polyphenols,” Eur J Pharmacol., 2004, 500:299-313.

Stoner et al., “The mechanism of low frequency a.c. Electrochemical Disinfection,” Bioelectrochemistry and Bioenergetics, 1982, 9:229243.

Straumal et al., “Vacuum arc deposition of protective layers on glass and polymer,” Thin Solid Films, 2001, 383:224-226.

Su et al., “Photoacoustic imaging of coronary artery stents,” Optics Express, vol. 17, No. 22, Oct. 26, 2009, pp. 1-8.

Suhaj, “Spice antioxidants isolation and their antiradical activity: a review,” J Food Composition andAnalysis, 2006, 19:531-537. Sukhorukov et al., “Comparative Analysis of Hollow and Filled Polyelectrolyte Microcapsules and Templated on Melamine Formaldehyde and Carbonate Cores,” Macromol. Chem. Phys., 2004, 205:530-535.

Sun et al., “Fabrication of a multilayer film electrode containing porphyrin and its application as a potentiometric sensor of iodide ion,” Talanta, 1998,46: 15-21.

Suslick et al., “The photochemistry of chromium, manganese, and iron porphytin complexes,” J. Chem., 1992, 16:633-642.

Tada et al., “Distribution of pH during galvanic corrosion of a Zn/steel couple,” Electrochimica Acta, 2004, 49: 1019-1026.

Tan et al., “Systematic Parameter Study for Ultra-Fine Fiber Fabrication Via Electrospinning Process,” Polymer, 2005, 46:6128-6134. Tian et al., “Corrosion resistance improvement of magnesium alloy using nitrogen plasma ion implantation,” Surface & Coatings Technology, 2005, 198:454-458.

Truong et al., “Corrosion protection of magnesium by electroactive polypyrrole/paint coatings,” Synthetic Metals, 2000, 110: 7-15. Turler et al., “Experimental low-level direct current therapy in liver metastases: influence of polarity and current dose,” Bioelectromagnetics, 2000, 21(5):395-401.

Uhlmann et al., “Schnelle 3D-Analyse von Gefugemerkmalen” Druckguss, Apr. 2009, pp. 1-5.

Van Alst, “Potential conflicts of interest,” Euro PCR09, 2009, pp. 1-22.

Vermette et al., “Immobilized Liposome Layers for Drug Delivery Applications,” J Controlled Release, 2002, 80:179-195.

Virtanen et al., “Electrochemical Behavior of Fe in Phosphate Solutions Studied by in Situ X-Ray Absorption Near Edge Structure,” Journal ofthe Electrochemical Society, vol. 146, No. 11, 1999, pp. 4087-4094.

Virtanen et al., “Special modes of corrosion under physiological and simulated physiological conditions,” Acta Biomaterialia, vol. 4, 2008, pp. 468-476.

Virtanen, “Corrosion of Biomedical Implant Materials,” Corrosion of Biomedical ImplantMaterials, vol. 26, Nos. 2-3, 2008, pp. 147-171. Volkova, “Effect of Deformation and Heat Treatment on the Structure and Properties of Magnesium Alloys of the Mg-Zn-Zr System,” Metal Science and Heat Treatment, vol. 48, Nos. 11-12, 2006, pp. 508-5 12.

Volynova et al., “Mechanical Properties and the Fine Structure of Powdered Iron-Manganese Alloys,” Plenum Publishing Corp., 1987, pp. 999-1006.

von Euler et al., “Cell proliferation and apoptosis in rat mammary cancer after electrochemical treatment (EChT),” Bioelectrochemistry, 2004, 62:57-65.

Vrbanic et al., “Air-Stable Monodispersed Mo6S3I6Nanowires,” Nanotechnology, 2004, 15:635-638.

Waksman et al., “Early-and Long-Term Intravascular Ultrasound and Angiographic Findings After Bioabsorbable Magnesium Stent Implantation in Human Coronary Arteries,” JACC.' Cardiovascular Interventions, vol. 2, No. 4, 2009, pp. 1-9.

Waksman et al., “Short-term Effects of Biocorrodible Iron Stents in Porcine Coronary Arteries,” Journal of Interventional Cardiology, vol. 21, No. 1, 2008, pp. 15-20.

Waksman, “Update on Bioabsorbable Stents: From Bench to Clinical,” Journal ofInterventional Cardiology, vol. 19, No. 5, 2006, pp. 414-421.

Waksman, Ron, “Current state of the metallic bioabsorbable stent,” Glimpse to the Future, Euro PCR09, 2009, pp. 1-24.

Waksman, Ron, “Why Bioabsorbale Stent Technology,” Glimpse to tl1eFuture, Euro PCR09, 2009, pp. 1-16.

Walleratl1 et al., “A blend of polyphenolic compounds explains the stimulatory effect of red wine on human endothelial NO synthase,” Nitric Oxide, 2005, 12:97-104.

Wan et al., “Preparation and characterization of porous conducting poly(DL-lactide) composite membrances,” Journal of Membrane Science, 2005, 246: 193-201.

Wan et al., “Influence of Plasma Immersion Ion Implantation on Corrosion Properties of Magnesium,” Southwest Jiaotong University, 2005, Chengu, 11 pages.

Wang et al., “Polyaniline microrods synthesized by a polyoxometalates/poly(vinyl alcohol) microfibers template,” Materials Letters, 2005, 59: 3982-3985.

Weiss et al., “Pyrrole derivatives for electrochemical coating of metallic medical devices,” J. Polymer Science, Part A: Polymer Chemistry, 2004,42: 1658-1667.

Wang et al., “Characterisation of Severely Deformed Austenitic Stainless Stell Wire,” Materials Science and Technology, 21(11):1323-1328.

Wang, “Recent development of non-platinum catalysts for oxygen reduction reaction,” J Power Sources, 2005, 152:1-15.

Weber et al., “Hardness and corrosion resistance of single-phase nitride and carbide on ion,” Materials Science and Engineering, 1995, 99:205-210.

Weh et al., “Evolution of afractal-like surface structures in layers of polyacrylonitrile solutions by interfacial dynamic processes,” J Colloid and Interface Science, 2004, 271: 407-415.

Weiss et al., “Pyrrole derivatives for electrochemical coating of metallic medical devices,” J Polymer Science, Part A.‘ Polymer Chemistry, 2004,42: 1658-1667.

White and Slade, “Polymer electrodes doped with heterpolymetallates and their use within solid-state supercapacitors,” Synthetic Metals, 2003, 139: 123-131.

Widmer et al., “Manufacture of porous biodegradable polymer conduits by an extrusion process for guided tissue regeneration,” Biomaterials, 1998, 19:1945-1955.

Wieneke et al., “Stent Coating: A New Approach in Interventional Cardiology,”Herz, 2002, 27(6):518-526.

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Wilcox, “Biodegradable Technology: Medtronic Biodegradable Stent Program,” Euro PCR09, 2009, pp. 1-25.

Williamson and Manach, “Bioavailability and bioefficacy of polyphenols in humans. II. Review of 93 intervention studies,”Am. J Clin. Nutr, 2005, 81(suppl):243S-255S.

Windecker et al., “Biolimus-eluting stent with biodegradable polymer versus sirolimus-eluting stent with durable polymer for coronary revascularisations (Leadrers): a randomized non-inferiority trial,” The Lancet, Sep. 1, 2008, pp. 1-11.

Witte et al., “Biodegradable magnesium-hydroxyapatite metal matrix composites,” Biomaterials, vol. 28, 2007, pp. 2163-2174. Witte et al., “In vitro and in vivo corrosion measurements of magnesium alloys,” Biomaterials, 2006, 27: 1013-1018.

Witte et al., “In Vivo Corrosion of Four Magnesium Alloys and the Associated Bone Response,” Biomaterials, vol. 26, 2005, pp. 35573563.

Witte, “The history of biodegradable magnesium implants: A review,”Acta Biomaterialia, 2010, 6: 1680-1692.

Witte, “Magnesium Corrosion: a New Challaenge for temporary Biomaterials,” Laboratory forBiomechanic and Biomaterials, 2009, pp. 1-20.

Wuisman and Smit, “Bioresorbable polymers: heading for a new generation spinal cages,” Eur. Spine J, 2006, 15: 133-148.

Xin et al., “Electrochemical Treatment of Lung Cancer,” Bioelectromagnetics, 1997, 18:8-13.

Xu et al., “In Vivo corrosion behaviouc of Mg-MnZn alloy for bone implant application,” Journal of Biomedical Materials Research Part A, Jun. 4, 2007, pp. 703-711.

Yamaguchi et al., “Mg2Si Coating Technology on Magnesium Alloys to Improve Corrosion and Wear Resistance”, JOM, 2004, p. 343. Ye et al., “In situ synthesis ofAIN particles in Mg-Al alloy by Mg3 -N2 addition,” Materials Letters, 2004, 58:2361-2361.

Yen et al., “Electrochemical treatment of human KB cells in vitro,” Bioelectromagnetics, 1999, 20:34-41.

Yfantis et al., “Novel corrosion-resistant films for Mg alloys,” Surface and Coatings Technology, 2002, 151-152: 400-404.

Yi et al., “Characterization of a bioactive nanotextured surface created by controlled chemical oxidation of titanium,” Surface Science, 2006, 600:4613-4621.

You et al., “The Effect of Calcium Additions on the Oxidation Behavior in Magnesium Alloys,”Scripta mater., 2000, 42:1089-1094.

Yu and Uan, “Sacrificial Mg film anode for cathodic protection of die cast Mg-9-wt.%-1 wt.%Zn alloy in NaC1 aqueous solution,” Scripta Mat., 2006, 54:1253-1257.

Yue et al., “Improvement in the Corrosion Resistance of Magnesium ZK60/SiC Composite by Excimer Laser Surface Treatment,” Scripta Materialia, 1998, 38(2):191-198.

Yuen et al., “Findings from an Accelerated in Vivo Corrosion Model of Magnesium,” Department of Orthopaedics and Traumatology, date unknown, pp. 1-2.

Yun et al., “Revolutionizing Biodegradable Materials,” Materials Today, Oct. 2009, vol. 12, No. 10, pp. 1-11.

Zarras et al., “Progress in using conductive polymers as corrosioninhibiting coatings,” Radiation Physics and Chemistry, 2003, 68: 387-394.

Zberg et al., “MgZnCa glasses without clinically observable hydrogen evolution for biodegradable implants,” Nature materials, Sep. 27, 2009, vol. 8, pp. 887-891.

Zeta Potential-An Introduction in 30Minutes, Technical Note, http:// www.nbtc.cornell.edu/facilities/downloads/Zeta%20potential%20%20An%20introduction%20in%2030%20minutes.pdf, Retrieved from the Internet on May 9, 2005 (6 pages).

Zhang et al., “Improving multilayer films endurance by photoinduced interaction between Dawson-type polyoxometalate and diazo resin,” Materials Chemistry and Physics, 2005, 90:47-52. Zhang et al., “Natural Polyelectrolyte Films Based on Layer-byLayer Deposition of Collagen and Hyaluronic Acid,” Biomaterials, 2005, 26:3353-3361.

Zhang et al., “Ways for fabricating stable a layer-by layer self-assemblies: combined ionic self-assembly and post chemical reaction,” Colloids and Surfaces A.‘ physiochemical and Engineering Aspects, 2002, pp. 198-200, 439-442.

Zheng, “Symposium on Biodegradable/Biocorroded metallic materials,” Nov. 24, 2009, pp. 1-74.

Zhou et al., “Drug-loaded, Magnetic, hollow silica nanocomposites for nanomedicine,” Nanomedicine: Nanotechnology, Biology and Medicine, 2005, 1:233-237.

Zhu et al., “Biocompatibility of Fe-O films synthesized by plasma immersion ion implantation and deposition,” Surface and Coatings Technology, vol. 203, 2009, pp. 1523-1529.

Zhu et al., “Biocompatibility of pure iron: in Vitro assessment of degradation kinetics and cytotoxicity on endothelial cells,” Materials Science and Engineering, vol. 29, 2009, pp. 1589-1582.

Zou et al., “Preparation of a phosophopolyoxomolybdate P2Mo18O6' 62 doped polypyrrole modified electrode and its catalytic properties,” Journal ofElectroanalytical Chemistry, 2004, 566: 63-71.

Zucchi et al., “Electrochemical behaviour of a magnesium alloy containing rare earth elements,” Journal ofApplied E lectrochemistry, 2006, vol. 36, pp. 195-204.

Zucchi et al., “Influence of a silane treatment on the corrosion resistance of aWE43 magnesium alloy,” Surface Coatings Technol. , 2006, 200:4136-4143.

International Search Report and Written Opinion from PCT/US09/ 043591, mailed Jun. 30, 2010, 10 pages.

International Search Report from PCT/US07/005671, mailed Jun. 2, 2008, 10 pages.

Ma et al , “Inhibition effect of self-assembled films formed by gold nonoparticles on iron surface,” Applied Surface Science, 2006, 252: 4327-4334.

Li et al., “The corrosion inhibition of the self assembled Au, and Ag nonoparticles films on the surface of copper,” Colloids and Surfaces A: Physiochem. Eng. Aspects, 2006, 273: 16-23.

International Preliminary Report on Patentability from PCT/US08/ 75976 dated Mar. 25, 2010, mailed Nov. 25, 2008, 8 pages.

US 6,533,715, 03/2003, Hossainy et al. (withdrawn)

* cited by examiner

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