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股骨头负重区松质骨的压缩力学特性
引用本文:俞超,薛文东,张双燕,水汶. 股骨头负重区松质骨的压缩力学特性[J]. 中国组织工程研究与临床康复, 2005, 9(18): 238-239
作者姓名:俞超  薛文东  张双燕  水汶
作者单位:上海第二医科大学附属第九人民医院骨科生物力学实验室,上海市,200011
摘    要:背景松质骨力学特性在代谢性疾病、骨折、关节退行性变的内在发生规律中具有意义.目的了解松质骨的生物力学特性.设计以股骨标本为单一样本的实验观察.单位上海第二医科大学附属第九人民医院骨科生物力学实验室.对象2001-05/07完成于在上海第九人民医院骨科生物力学实验室,选取19具男性尸体股骨头.方法取19具新鲜青年(30岁左右)尸体股骨.对股骨头负重区的松质骨进行压缩测试.主要观察指标标本的屈服载荷、极限应力、极限应变、能量值、弹性模量.结果测算松质骨各项压缩数据,其中屈服载荷的平均值为(410.64±190.29)N,极限应力为(8.69±3.75)MPa,极限应变为(10.84±6.58)%,能量值为(2.54±1.89)J,弹性模量为(40.77±32.12)MPa.加载初期松质骨呈弹性变形,此后横截面增大抗压能力增强.结论试验表明松质骨力学性能主要是缓解外力冲击加压.

关 键 词:股骨头  力学  负重

Compressive mechanical properties of the bearing area of femur head
YU Chao,XUE Wen-dong,Zhang Shuang-yan,Shui Wen. Compressive mechanical properties of the bearing area of femur head[J]. Journal of Clinical Rehabilitative Tissue Engineering Research, 2005, 9(18): 238-239
Authors:YU Chao  XUE Wen-dong  Zhang Shuang-yan  Shui Wen
Abstract:BACKGROUND: Properties of cancellous bone is significant for metabolic diseases, fracture and joint retrograde diseases.OBJECTIVE: To study the biomechanical properties of cancellous bone.DESIGN: Experimental observation based on femur specimens as the single sample.SETTING: Laboratory of Orthopaedic Biomechanics Ninth Affiliated Hospital Shanghai Second Medical University.PARTICIPANTS: The study was completed in the Laboratory of Orthopaedic Biomechanics, Shanghai Ninth People's Hospital from May to July in 2001,totally 19 male cadaveric femoral heads were selected.METHODS: Totally 19 cadeveric cancellouce bone specimens(about 30years old) from the bearing area of fresh femur head were tested by compression test.MAIN OUTCOME MEASURES: Yield load limiting stress, limiting strain, energy value and elastic modulus of specimens.RESULTS: The compressive data of cancellous bone were measured, the average value of yield load was (410.64 ± 190.29) N , limiting stress was (8.69 ± 3.75) MPa, limiting strain was (10. 84 ±6.58)%, energy value was (2.54 ± 1.89)J, modulus of elasticity was (40.77 ± 32. 12)MPa, At the early time of loading, the cancellous bone showed elastic deformation, then CONCLUSION: The trial indicates that biomechanical properties lighten the pressure of external compression.
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