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骨组织的多层次生物力学特性及本构关系
引用本文:于露,李昊,高丽兰,陈维毅,张西正.骨组织的多层次生物力学特性及本构关系[J].医用生物力学,2019,34(4):434-439.
作者姓名:于露  李昊  高丽兰  陈维毅  张西正
作者单位:太原理工大学 应用力学与生物医学工程研究所,军事科学院 卫勤保障研究所,天津理工大学 天津市先进机电系统设计与智能控制重点实验室,太原理工大学 应用力学与生物医学工程研究所,军事科学院 卫勤保障研究所
基金项目:国家自然科学基金项目(11432016,11632013)
摘    要:骨组织是人体主要的承重器官,其承载能力与自身生物力学特性密切相关。作为一种复杂的多层次生物材料,骨组织的生物力学特性由其自身结构和生物学特性等因素共同决定。在不同程度的力学载荷下,骨组织表现出不同的生物力学特性。因此,深入研究骨组织不同层次的生物力学特性,构建能够反映骨组织生物学特性的本构关系,量化骨组织对力学载荷的响应,实现从骨组织生物力学特性到力学生物学特性的研究,为临床治疗提供精确的理论依据,一直以来都是研究者关注的重点。基于骨组织多层次生物力学特性,对近年来骨组织本构方程的相关研究进行归纳总结。

关 键 词:骨组织    多层次结构    力学适应性    骨重建    本构关系
收稿时间:2018/6/6 0:00:00
修稿时间:2018/8/14 0:00:00

Hierarchical Biomechanical Properties and Constitutive Relationships of Bone Tissues
YU Lu,LI Hao,GAO Lilan,CHEN Weiyi and ZHANG Xizheng.Hierarchical Biomechanical Properties and Constitutive Relationships of Bone Tissues[J].Journal of Medical Biomechanics,2019,34(4):434-439.
Authors:YU Lu  LI Hao  GAO Lilan  CHEN Weiyi and ZHANG Xizheng
Institution:Institute of Applied Mechanics and Biomedical Engineering, Taiyuan University of Technology,Institute of Medical Support Technology, Academy of Military Sciences,Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System, Tianjin University of Technology,Institute of Applied Mechanics and Biomedical Engineering, Taiyuan University of Technology and Institute of Medical Support Technology, Academy of Military Sciences
Abstract:As the main organ of the body, the load-bearing ability of bone is closely connected to its biomechanical properties. Bone is a complex hierarchical biomaterial, whose biomechanical properties are determined by its own structure and biological characteristics. Because of its mechanical adaptability, bone tissues represent different biomechanical properties under different mechanical loading. To quantify the complicated properties of bone and provide an accurate theoretical basis for clinical research, it is necessary to give insight into the biomechanical properties of bone at different levels and the constitutive relationships of bone tissues. In this review, relative researches on constitutive relationships in recent years were summarized based on its hierarchical biomechanical properties.
Keywords:bone tissues  hierarchical structure  mechanical adaptation  bone remodeling  constitutive relationships
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