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牛胫骨小梁骨拉伸强度和抗压强度之间的差异取决于模量。

Differences between the tensile and compressive strengths of bovine tibial trabecular bone depend on modulus.

作者信息

Keaveny T M, Wachtel E F, Ford C M, Hayes W C

机构信息

Department of Orthopaedic Surgery, Charles A. Dana Research Institute, Beth Israel Hospital, Boston, Massachusetts.

出版信息

J Biomech. 1994 Sep;27(9):1137-46. doi: 10.1016/0021-9290(94)90054-x.

Abstract

The conflicting conclusions regarding the relationship between the tensile and compressive strengths of trabecular bone remain unexplained. To help resolve this issue, we compared measurements of the tensile (n = 22) and compressive (n = 22) yield strengths, and yield strains, of trabecular bone specimens taken from 38 bovine proximal tibiae. We also studied how these failure properties depended on modulus and apparent density. To enhance accuracy, trabecular orientation was controlled, and each specimen had a reduced section where strains were measured with a miniature extensometer. We found that the mean yield strength was 30% lower for tensile loading. However, the difference between individual values of the tensile and compressive strengths increased linearly with increasing modulus and density, being negligible for low moduli, but substantial for high moduli. By contrast, both the tensile and compressive yield strains were independent of modulus and density, with the yield strain being 30% lower for tensile loading. Thus, the difference between the tensile and compressive strengths of bovine tibial trabecular bone depends on the modulus, but the difference between yield strains does not. This phenomenon may explain in part that conflicting conclusions reached previously on the tensile and compressive strengths of trabecular bone since the mean modulus has varied among different studies. Realizing that our data pertain only directly to bovine tibial trabecular bone for longitudinal loading, our results nevertheless suggest that failure parameters based on strains may provide more powerful and general comparisons of the failure properties for trabecular bone than measures based on stress.

摘要

关于松质骨拉伸强度与抗压强度之间的关系,相互矛盾的结论仍无法解释。为了帮助解决这个问题,我们比较了取自38根牛胫骨近端的22个松质骨样本的拉伸屈服强度(n = 22)、抗压屈服强度(n = 22)以及屈服应变。我们还研究了这些破坏特性如何依赖于模量和表观密度。为提高准确性,控制了松质骨的取向,并且每个样本都有一个缩减截面,在该截面用微型引伸计测量应变。我们发现,拉伸加载时的平均屈服强度低30%。然而,拉伸强度与抗压强度的个体值差异随模量和密度的增加呈线性增加,对于低模量可忽略不计,但对于高模量则相当显著。相比之下,拉伸屈服应变和抗压屈服应变均与模量和密度无关,拉伸加载时的屈服应变低30%。因此,牛胫骨松质骨的拉伸强度与抗压强度之差取决于模量,但屈服应变之差则不然。由于不同研究中的平均模量有所不同,这一现象可能部分解释了之前关于松质骨拉伸强度和抗压强度得出的相互矛盾的结论。尽管我们的数据仅直接适用于纵向加载的牛胫骨松质骨,但我们的结果表明,基于应变的破坏参数可能比基于应力的测量方法能为松质骨的破坏特性提供更有力和更普遍的比较。

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