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首页> 外文期刊>Journal of orthopaedic research >Functional dependence of cancellous bone shear properties on trabecular microstructure evaluated using time-lapsed micro-computed tomographic imaging and torsion testing.
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Functional dependence of cancellous bone shear properties on trabecular microstructure evaluated using time-lapsed micro-computed tomographic imaging and torsion testing.

机译:松质骨剪切特性对小梁微结构的功能依赖性,使用延时微计算机断层扫描成像和扭转测试进行评估。

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When compressed axially, cancellous bone often fails at an oblique angle along well-defined bands, highlighting the importance of cancellous bone shear properties. Torsion testing to determine shear properties of cancellous bone has often been conducted under conditions appropriate only for axisymmetric specimens comprised of homogeneous and isotropic materials. However, most cancellous bone specimens do not meet these stringent test conditions. Therefore, we studied the application of the stepwise torsion testing system in biologic specimens with viscoelastic behavior. We explore the functional dependence of cancellous bone shear properties on trabecular microstructure and its spatial distribution, specifically the contribution of the subregion with the minimum polar moment of inertia to the overall failure properties. Torsional properties of whale trabecular specimens obtained by the incremental application of stepwise torque were not different from those obtained via continuous testing. Average polar moment of inertia accounted for 82 and 67% of the variation in shear modulus and shear stress, respectively. However, torsional properties were better predicted by the subregion with minimum polar moment of inertia, describing 87 and 74% of the variation in shear modulus and shear stress. The use of a novel torsion testing system for nonhomogeneous, orthotropic cancellous bone using stepwise application of torsion and simultaneous micro-computed tomographic imaging was further studied. Most importantly, a heterogeneous cancellous bone microstructural environment, the subregion with the minimum polar moment of inertia, hence the weakest spatial distribution of bone, predicted the shear properties for the entire bone volume. (c) 2009 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 27:1667-1674, 2009.
机译:当轴向压缩时,松质骨通常会沿着明确定义的条带以一定的倾斜角度破裂,这突出了松质骨剪切特性的重要性。通常在仅适用于由均质和各向同性材料组成的轴对称试样的条件下进行扭转测试以确定松质骨的剪切特性。但是,大多数松质骨标本不满足这些严格的测试条件。因此,我们研究了逐步扭转测试系统在具有粘弹性行为的生物样本中的应用。我们探讨了松质骨剪切特性对小梁微结构及其空间分布的功能依赖性,特别是具有最小极惯性矩的次区域对整体破坏特性的贡献。通过逐步施加逐步扭矩获得的鲸鱼小梁标本的扭转特性与通过连续测试获得的那些没有什么不同。平均极惯性矩分别占剪切模量和剪切应力变化的82%和67%。但是,该扭转特性可以通过最小极惯性矩的次区域更好地预测,描述了剪切模量和剪切应力变化的87%和74%。进一步研究了一种新颖的扭转测试系统对不均匀,正交各向异性的松质骨的使用,该系统通过逐步施加扭转和同时进行微型计算机断层扫描成像来进行研究。最重要的是,异质的松质骨微结构环境,极小惯性矩的子区域(因此是最弱的骨骼空间分布)预测了整个骨骼体积的剪切特性。 (c)2009骨科研究学会。由Wiley Periodicals,Inc.出版,J Orthop Res 27:1667-1674,2009。

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