PEEK Biomaterials Handbook

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2019
ISBN13: 9780128125243
Rubricering
Elsevier Science e druk, 2019 9780128125243
Onderdeel van serie Plastics Design Library
€ 263,80
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Samenvatting

PEEK biomaterials are currently used in hundreds of thousands of spinal fusion patients around the world every year. Durability, biocompatibility, and excellent resistance to aggressive sterilization procedures make PEEK a polymer of choice, replacing metal in orthopedic implants, from spinal implants and knee replacements to finger joints and dental implants.The new edition of this authoritative work sees the book expand from 17 chapters to 26 chapters to match the expansion in applications in PEEK—from spinal cages to spinal rods and disc replacements; hip and knee joint replacement; dental; trauma; and sports medicine. New PEEK formulations have been developed incorporating hydroxyapatite, additives to combat infection, and surface grafted polymers to improve lubrication. The book also covers additive manufacturing, which has made significant inroads with PEEK in the past 5 years as well by introducing the prospect of patient-specific implants.Like the 1st edition, the updated Handbook brings together experts in many different facets related to PEEK clinical performance as well as in the areas of materials science, tribology, and biology to provide a complete reference for specialists in the field of plastics, biomaterials, medical device design, and surgical applications.Useful for materials scientists and biomedical engineers, both in industry and academia, the book is a one-stop shop for information on PEEK as a biomaterial—including in-depth coverage of materials properties—while also providing cutting-edge information on applications and combinations of the material.

Specificaties

ISBN13:9780128125243
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>Part 1 - PEEK Foundations, Properties, and Behavior<br>1 An Overview of PEEK Biomaterials<br>2 Synthesis and Processing of PEEK for Surgical Implants<br>3 Compounds and Composite Materials<br>4 Morphology and Crystalline Architecture of Polyaryletherketones<br>5 Fracture, Fatigue, and Notch Behavior of PEEK<br>6 Chemical and Radiation Stability of PEEK<br>7 Additive Manufacturing of Polyaryletherketones</p> <p>Part 2 - Bioactive PEEK Materials<br>8 Biocompatibility of PEEK Polymers<br>9 Bacterial Interactions With PEEK<br>10 Thermal Plasma Spray Deposition of Titanium and Hydroxyapatite on PEEK Implants<br>11 Surface Modification Techniques of PEEK, Including Plasma Surface Treatment<br>12 Bioactive Polyaryletherketone Composites</p> <p>Part 3 - PEEK Applications in Medical Devices<br>13 Porosity in PEEK<br>14 Phospholipid Polymer-Grafted Poly(Ether-Ether-Ketone) by Self-Initiated Surface Grafting<br>15 Development and Clinical Performance of PEEK Intervertebral Cages<br>16 Dynamic Stabilization and Semirigid PEEK Rods for Spinal Fusion<br>17 Applications of Polyetheretherketone in Arthroscopy<br>18 Polyetheretherketone in Trauma<br>19 Applications of Polyetheretherketone in Craniomaxillofacial Surgical Reconstruction<br>20 Applications of PEEK in the Dental Field<br>21 Isoelastic PEEK Implants for Total Joint Replacement<br>22 Biologic Responses to Polyetheretherketone (PEEK) Wear Particles<br>23 Biotribology of PAEK Bearings in Multidirectional Pin-on-Disk Testers<br>24 PEEK Biomaterials in Total Joint Replacement<br>25 PEEK-on-Ceramic Cervical Disc Arthroplasty<br>26 FDA Regulation of PEEK Implants<br></p>
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        PEEK Biomaterials Handbook