Buch, Englisch, Band 13, 339 Seiten, Format (B × H): 155 mm x 235 mm, Gewicht: 608 g
Reihe: Springer Series in Biomaterials Science and Engineering
Structures, Properties and Clinical Performance
Buch, Englisch, Band 13, 339 Seiten, Format (B × H): 155 mm x 235 mm, Gewicht: 608 g
Reihe: Springer Series in Biomaterials Science and Engineering
ISBN: 978-981-13-6926-1
Verlag: Springer Nature Singapore
This book presents a comprehensive, state-of-the-art review of the latest progresses in UHMWPE biomaterials, which has been critical for the performance and longevity of joint implants. Oriented by clinical challenges to UHMWPE-based joint implants, it introduces the processing, crosslinking, structural manipulation, oxidation mechanism, stabilization, drug delivery, and wear, as well as clinical performance, biomechanics, and simulated studies of joint implant based on UHMWPE with low wear, which are aimed to tackle or minimize the adverse effect related to wear and wear debris. These contributions provide fundamentals of chemistry and physics of UHMWPEs to help understand the clinical performances of UHMWPE based joint implants. Perspectives to next generation UHMWPE to meet the unmet challenges in clinical use are included.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
- Naturwissenschaften Chemie Organische Chemie Polymerchemie
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Statik, Dynamik, Kinetik, Kinematik
- Technische Wissenschaften Sonstige Technologien | Angewandte Technik Medizintechnik, Biomedizintechnik
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Medizin, Gesundheitswesen Medizintechnik, Biomedizintechnik, Medizinische Werkstoffe
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Maschinenbau Tribologie
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Biomaterialien, Nanomaterialien, Kohlenstoff
Weitere Infos & Material
Clinical Applications of UHMWPE.- Highly Crosslinked UHMWPE.- Oxidation Mechanisms of UHMWPE.- Stablization of Highly Crosslinked UHMWPE .- Natural Polyphnol Stabilized Highly Crosslinked.- High Temperature Melted, Crosslinked, and Stabilized UHMWPE.- Effect of Biomolecules on Wear and Oxidation of UHMWPE Components.- Drug-loaded UHMWPE to Inhibit Wear Particle-induced Osteolysis—Processing, Characterizing and Biological Evaluation.- Biomechanics in Artificial Joints.- Tribology in Artificial Joints.- Perspective of Next Generation Polymer Materials for Joint Implants.