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人股骨近端干骺端的应变分布

Strain distribution in the proximal human femoral metaphysis.

作者信息

Cristofolini L, Juszczyk M, Taddei F, Viceconti M

机构信息

Laboratorio di Tecnologia Medica, Istituto Ortopedico Rizzoli, Bologna, Italy.

出版信息

Proc Inst Mech Eng H. 2009 Apr;223(3):273-88. doi: 10.1243/09544119JEIM497.

Abstract

There is significant interest in the stress-strain state in the proximal femoral metaphysis, because of its relevance for hip fractures and prosthetic replacements. The scope of this work was to provide a better understanding of the strain distribution, and of its correlation with the different directions of loading, and with bone quality. A total of 12 pairs of human femurs were instrumented with strain gauges. Six loading configurations were designed to cover the range of directions spanned by the hip joint force. Inter-specimen variability was reduced if paired specimens were considered. The principal strain magnitude varied greatly between loading configurations. This suggests that different loading configurations need to be simulated in vitro. The strain magnitude varied between locations but, on average, was compatible with the strain values measured in vivo. The strain magnitudes and the direction of principal tensile strain in the head and neck were compatible with the spontaneous fractures of the proximal femur reported in some subjects. The principal tensile strain was significantly larger where the cortical bone was thinner; the compressive strain was larger where the cortical bone was thicker. The direction of the principal strain varied significantly between measurement locations but varied little between loading configurations. This suggests that the anatomy and the distribution of anisotropic material properties enable the proximal femur to respond adequately to the changing direction of daily loading.

摘要

由于股骨近端干骺端的应力-应变状态与髋部骨折及假体置换密切相关,因此受到了广泛关注。本研究的目的是更深入地了解应变分布,以及应变与不同加载方向和骨质量之间的关系。总共12对人股骨安装了应变片。设计了六种加载配置,以涵盖髋关节力所跨越的方向范围。如果考虑配对标本,则标本间的变异性会降低。不同加载配置下主应变大小差异很大。这表明需要在体外模拟不同的加载配置。应变大小在不同位置之间有所变化,但平均而言,与体内测量的应变值相符。头部和颈部的应变大小以及主拉伸应变方向与一些受试者中报道的股骨近端自发性骨折相符。皮质骨较薄处的主拉伸应变明显更大;皮质骨较厚处的压缩应变更大。主应变方向在测量位置之间有显著变化,但在加载配置之间变化很小。这表明解剖结构和各向异性材料特性的分布使股骨近端能够充分应对日常加载方向的变化。

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