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直接在体的人体骨应变测量——系统文献回顾。

Direct in vivo strain measurements in human bone-a systematic literature review.

机构信息

College of Kinesiology, [corrected] University of Saskatchewan, Canada.

出版信息

J Biomech. 2012 Jan 3;45(1):27-40. doi: 10.1016/j.jbiomech.2011.08.004. Epub 2011 Sep 1.

DOI:10.1016/j.jbiomech.2011.08.004
PMID:21889149
Abstract

Bone strain is the governing stimuli for the remodeling process necessary in the maintenance of bone's structure and mechanical strength. Strain gages are the gold standard and workhorses of human bone experimental strain analysis in vivo. The objective of this systematic literature review is to provide an overview for direct in vivo human bone strain measurement studies and place the strain results within context of current theories of bone remodeling (i.e. mechanostat theory). We employed a standardized search strategy without imposing any time restriction to find English language studies indexed in PubMed and Web of Science databases that measured human bone strain in vivo. Twenty-four studies met our final inclusion criteria. Seven human bones were subjected to strain measurements in vivo including medial tibia, second metatarsal, calcaneus, proximal femur, distal radius, lamina of vertebra and dental alveolar. Peak strain magnitude recorded was 9096 με on the medial tibia during basketball rebounding and the peak strain rate magnitude was -85,500 με/s recorded at the distal radius during forward fall from standing, landing on extended hands. The tibia was the most exposed site for in vivo strain measurements due to accessibility and being a common pathologic site of stress fracture in the lower extremity. This systematic review revealed that most of the strains measured in vivo in different bones were generally within the physiological loading zone defined by the mechanostat theory, which implies stimulation of functional adaptation necessary to maintain bone mechanical integrity.

摘要

骨骼应变是维持骨骼结构和机械强度所必需的重塑过程的主要刺激因素。应变计是体内人类骨骼实验应变分析的黄金标准和主力。本系统文献综述的目的是提供直接在体人骨应变测量研究的概述,并将应变结果置于当前骨重塑理论(即机械系统理论)的背景下。我们采用了标准化的搜索策略,没有施加任何时间限制,以查找在 PubMed 和 Web of Science 数据库中索引的测量人体骨骼在体应变的英文研究。有 24 项研究符合我们的最终纳入标准。有 7 块人骨在体内进行了应变测量,包括胫骨内侧、第二跖骨、跟骨、股骨近端、桡骨远端、椎板和牙槽。在篮球反弹过程中,胫骨内侧记录到的最大应变幅度为 9096 με,在从站立向前摔倒、用伸展的手着地时,桡骨远端记录到的最大应变速率幅度为-85500 με/s。胫骨由于易于接近和下肢应力性骨折的常见病变部位,是体内应变测量最暴露的部位。本系统综述表明,不同骨骼中在体测量的大多数应变通常都在机械系统理论定义的生理载荷范围内,这意味着刺激维持骨骼机械完整性所必需的功能性适应。

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