Global Orthopedic Biomaterials Market 2015 2021 : Market Analysis, Share, Regional Outlook, Fore

Orthopaedic biomaterials market is expected to grow at a CAGR of 11% for the forecasted period of 2015-2021. Orthopedic materials are defined as materials used for internal fracture fixation; biomaterials are used for manufacturing bone implants. Biomaterials are composed of organic or synthetic materials. Biomaterials help in repairing the structural integrity of the damaged bones and joints. The biomaterials are implanted to perform the role of pre existing damaged tissues such as bones, ligaments and tendons. Some of the key factors that have a major impact on the orthopedic biomaterials market are growing acceptance of biomaterials with more research and development assisting the market growth. Orthopaedic surgeries are on a rise, high healthcare expenditure and disposable income of emerging market are also driving the market. High number of bone and joint related degenerative problems is one of the major drivers. The implants are used in the case of diseases such as osteoporosis, arthritis, tumors, trauma, tissue injuries and other bone related issues.
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The market is segmented on the basis of products, application and biomaterials type. The biomaterials type includes metals and non-metals. Metals include stainless steel, titanium and cobalt alloys; non metals include ceramics, polymers and composites. Application of biomaterials includes orthobiologics, joint replacements, viscosupplementation and others. Products include bone allografts, aligned bone matrix, machined bones, bone morphogenetic protein, synthetic bone substitute and others.
The market is driven by high expenditure in the research and development field. New biomaterials are being developed which are more compatible to human body. One of the major issues faced by manufacturers, physicians and patients alike is the biocompatibility of the products. Manufacturers are working on various new biomaterials and developing tissue reengineering techniques. Polymer based biodegradable biomaterials are being produced at a higher volume such as polyglycolic acid and polylactic acids. These polymers can easily be placed, as the implants are removed the callus strength increases. The hardware removal is not necessary therefore reducing the cost. High prevalence of age related lifestyle diseases and increasing number of elderly population is also driving the market.
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Companies Profiled1. Genzyme Corporation2. Carpenter Technology Corporation3. Materion Corporation4. Ulbrich Stainless Steel & Special Metals, Inc5. Heraeus Medical Components6. CeramTec (a subsidiary of Rockwood Holdings Inc)7. Ceradyne, Inc8. Kyocera Corporation9. Bayer10. Purac Biomaterials11. DSM Biomedical Inc12. Evonik Industries AG13. Cam Bioceramics BV14. Ticona GmbH15. Osteotech, Inc16. Starch Medical, Inc Landec Corporation17. Biomet18. DePuy Synthes19. Medtronic20. Stryker21. Wright Medical Group22. Zimmer Holdings23. Etex Corp24. Invibo PEEK biomaterial solutions25. Biocoat Incorporated
1. Introduction1.1. Executive summary1.2. Estimation methodology
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2. Market overview2.1. Market definition and scope2.2. Key findings2.3. Parametric analysis2.3.1. Global orthopedic implants market2.3.2. Global orthopedic surgeries2.3.3. Unit shipments for implants2.3.4. Healthcare expenditure across geographies2.3.5. Disposable income of top emerging economies2.4. Key market insights2.4.1. Top 3 emerging countries2.4.2. Top 3 revenue generating segments2.4.3. Top growing markets and emerging trends2.4.4. R&D scenario in biomaterial market2.4.5. Pricing analysis2.5. Competitive intelligence2.5.1. Market share analysis2.5.2. Top winning strategies2.5.3. Case studies: Top competitive moves2.6. Value Chain analysis2.7. Key buying criteria2.8. Strategic recommendation2.9. Strategic conclusions
3. Market determinants3.1. Market drivers3.1.1. Increased funding by government and private firms in research and development3.1.2. High production of polymer based biomaterials3.1.3. High elderly population and prevalence of lifestyle diseases3.1.4. Technology advancements3.2. Market Restraints3.2.1. Compatibility of biomaterials with recipient3.2.2. Government policies3.2.3. Post surgery issues3.3. Market challenges
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