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8.1 Biomaterials: Relative Properties 8.2 Bulk(Mechanical) and Surface Properties 8.3 Reactivity: Molecular Interactions 8.4 Bioadhesion (Tissue Bonding): Physical and Chemical Mechanisms 8.5 Factors Affecting Biomaterials
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6.1 Performance Specifications 6.2 Biocompatibility 6.3 Degradation 6.4 Risk/Benefit Ratio 6.5 Clinical Trial Design
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2.1 Functional Performance of the Device(and Attachment to Tissue) 2.1.1 Mechanical 2.1.1.1Strength and Modulus of Elasticity: Modulus Matching 2.1.1.2 Tribology 2.1.2.3 Kinematics 2.1.2 Chemical 2.1.2.1 Drug Delivery/Controlled Release System
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4.1 Performance Specifications 4.2 Biocompatibility 4.3 Degradation 4.4 Risk/Benefit ratio 4.5 Clinical Trial Design
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5.1 Defining the Clinical Problem 5.2 Anatomical Considerations 5.3 Biomechanical Considerations 5.4 Functional Requirements 5.5 Goodness of Fit 5.6 Fixation
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Introduction 一、 Concept and division Human Anatomy is the science which deals with the gross morphology and spatia interrelations of the structure of the body. For medical
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1. What is gene therapy? Genes, which are carried on chromosomes, are the basic physical and functional units of heredity. Genes are specific sequences of bases that encode instructions on how to make proteins
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一、前言 二、遗传咨询的临床基础 三、遗传病的再发风险率的估计 四、遗传病的群体筛查 五、遗传与优生
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一、前言 二、遗传病治疗的原则 三、传统的遗传病的治疗方法 四、基因治疗
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一、前言 二、遗传病的常规诊断 三、分子诊断
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