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Titlebook: UHMWPE Biomaterials for Joint Implants; Structures, Properti Jun Fu,Zhong-Min Jin,Jin-Wu Wang Book 2019 Springer Science+Business Media Sin

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Shuxin Qu,Yumei Liu,Kemeng Gong Understanding what a musical passage is about logically presupposes a myriad of correlate moves in the entire range of our language-games. Wittgenstein explicates the notion of musical aboutness in terms of intransitive understanding, which expresses an internal relation conjoining musical gesture
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Jin-Wu Wang,Han Yang,Cheng-Tao Wang,Zhong-Min Jin,Ke-Rong Dai2) an attempt to replace this radical skepticism with a practical, Common Sense framework. Implicit in Wittgenstein’s approach are a number of strategies found in a contemporary approach to psychotherapy known as .Cognitive Behavioral Therapy (CBT).. These strategies, along with philosophical method
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2195-0644 nical applications.Timely reviews the latest progresses in b.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
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Clinical Applications of UHMWPE in Joint Implants,, disease, or overuse. Typical artificial joints consist of a metallic component integrated with bone and a polymer component that facilitates movement. The requirements for the polymer include biocompatibility, toughness, wear resistance, lubrication, etc. Over the past 50 years, ultrahigh-molecula
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Natural Polyphenol-Stabilized Highly Cross-Linked UHMWPE for Joint Implants,itical for the long-term performance and life span of joint implants. The use of antioxidants and/or radical scavengers has proven efficient in stabilizing cross-linked UHMWPE against oxidation, whereas challenges remain to explore new methods to offer not only oxidative stability but also superior
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Biomechanics and Tribology of Artificial Knee Joint,r, the wear of UHMWPE inserts, the prosthetic aseptic loosening, and the osteolysis induced by wear particles limit the in vivo performance and lifetime of TKA. The loading and wear performance of UHMWPE components in TKA largely depend on the in vivo biomechanics of artificial knee joint. In turn,
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