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第四代复合肱骨的力学特性

Mechanical characterization of fourth generation composite humerus.

作者信息

Grover P, Albert C, Wang M, Harris G F

机构信息

Medical College of Wisconsin, Milwaukee, WI, USA.

出版信息

Proc Inst Mech Eng H. 2011 Dec;225(12):1169-76. doi: 10.1177/0954411911423346.

Abstract

Mechanical data on upper extremity surrogate bones, supporting use as biomechanical tools, is limited. The objective of this study was to characterize the structural behaviour of the fourth-generation composite humerus under simulated physiologic bending, specifically, stiffness, rigidity, and mid-diaphysial surface strains. Three humeri were tested in four-point bending, in anatomically defined anteroposterior (AP) and mediolateral (ML) planes. Stiffness and rigidity were derived using load-displacement data. Principal strains were determined at the anterior, posterior, medial, and lateral surfaces in the humeral mid-diaphysial transverse plane of one specimen using stacked rosettes. Linear structural behaviour was observed within the test range. Average stiffness and rigidity were greater in the ML (918 +/- 18 N/mm; 98.4 +/- 1.9 Nm2) than the AP plane (833 +/- 16 N/mm; 89.3 +/- 1.6 Nm2), with little inter-specimen variability. The ML/AP rigidity ratio was 1.1. Surface principal strains were similar at the anterior (5.41 micro epsilon/N) and posterior (5.43 micro epsilon/N) gauges for AP bending, and comparatively less for ML bending, i.e. 5.1 and 4.5 micro epsilon/N, at the medial and lateral gauges, respectively. This study provides novel strain and stiffness data for the fourth-generation composite humerus and also adds to published construct rigidity data. The presented results support the use of this composite bone as a tool for modelling and experimentation.

摘要

关于上肢替代骨作为生物力学工具使用的力学数据有限。本研究的目的是表征第四代复合肱骨在模拟生理弯曲下的结构行为,具体而言,是刚度、刚性和骨干中部表面应变。对三根肱骨在解剖学定义的前后(AP)和内外侧(ML)平面进行四点弯曲测试。使用载荷 - 位移数据得出刚度和刚性。使用堆叠式应变片在一个标本的肱骨骨干中部横向平面的前、后、内、外表面确定主应变。在测试范围内观察到线性结构行为。ML平面(918±18 N/mm;98.4±1.9 Nm²)的平均刚度和刚性大于AP平面(833±16 N/mm;89.3±1.6 Nm²),标本间变异性较小。ML/AP刚性比为1.1。AP弯曲时,前(5.41微应变/N)后(5.43微应变/N)应变片处的表面主应变相似,而ML弯曲时,内侧和外侧应变片处的主应变相对较小,分别为5.1和4.5微应变/N。本研究提供了第四代复合肱骨的新应变和刚度数据,也补充了已发表的结构刚性数据。所呈现的结果支持将这种复合骨用作建模和实验工具。

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