UHMWPE Biomaterials Handbook

ebook Ultra High Molecular Weight Polyethylene in Total Joint Replacement and Medical Devices · Plastics Design Library

By Steven M. Kurtz

cover image of UHMWPE Biomaterials Handbook

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"UHMWPE Biomaterials Handbook, Fourth Edition”, describes the science, development, properties, and application of ultra-high molecular weight polyethylene (UHMWPE) used in artificial joints. This book is the comprehensive reference for information on this advanced material, covering both introductory topics and the most advanced developments. This thoroughly revised new (4th) edition is divided into four distinct sections, deftly guiding the reader through the foundations, bearings, biomaterials, and specific development aspects of UHMWPE in total joint replacement. New to this edition are five chapters on a range of topics, including the latest in development and characterization of chemically crosslinked HXLPE for joint replacement, and assessment of the clinical performance of antioxidant technologies for stabilizing HXLPE. Use of UHMWPE liners for dual mobility total hip replacement is discussed, as well as applications in the hand and wrist. Written and edited by the top experts in the field of UHMWPE, this is the only state-of-the-art reference for professionals, researchers, and clinicians working with this material.
  • The only complete reference for professionals, researchers, and clinicians working with ultra-high molecular weight polyethylene biomaterials technologies for joint replacement and implants
  • New edition includes five new chapters on a wide range of topics, including applications of highly crosslinked polyethylene (HXLPE) in total joint replacement of the spine, clinical performance of antioxidant HXLPE, applications of UHMWPE in the hand and wrist, and dual mobility total hip replacement
  • State-of-the-art coverage of the latest UHMWPE technology, orthopedic applications, biomaterial characterization, and engineering aspects from recognized leaders in the field
  • UHMWPE Biomaterials Handbook