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骨盆的有限元建模:纳入肌肉和韧带边界条件。

Finite element modelling of the pelvis: inclusion of muscular and ligamentous boundary conditions.

作者信息

Phillips A T M, Pankaj P, Howie C R, Usmani A S, Simpson A H R W

机构信息

Edinburgh Orthopaedic Engineering Centre, The University of Edinburgh, Edinburgh, UK.

出版信息

Med Eng Phys. 2007 Sep;29(7):739-48. doi: 10.1016/j.medengphy.2006.08.010. Epub 2006 Oct 10.

Abstract

Previous finite element studies of the pelvis, including subject-specific studies have made extensive simplifications with regards to the boundary conditions used during analysis. Fixed boundary conditions are generally utilised at the pubis and superior part of the ilium. While it can be demonstrated that these models provide a close match for certain in vitro experiments that use similar boundary conditions, the resulting stress-strain fields in the cortex in particular are unlikely to be those found in vivo. This study presents a finite element analysis in which the pelvis is supported by muscular and ligamentous boundary conditions, applied using spring elements distributed over realistic attachment sites. The analysis is compared to an analysis in which the pelvis is restrained by fixed boundary conditions applied at the sacro-iliac joints. Striking differences in the stress-strain fields observed in cortical bone in particular, are found between the two analyses. The inclusion of muscular and ligamentous boundary conditions is found to lower the occurrence of stress concentrations within the cortex.

摘要

先前关于骨盆的有限元研究,包括针对特定个体的研究,在分析过程中所使用的边界条件方面进行了大量简化。通常在耻骨和髂骨上部采用固定边界条件。虽然可以证明这些模型与某些使用类似边界条件的体外实验结果非常吻合,但特别是皮质骨中产生的应力应变场不太可能与体内情况一致。本研究提出了一种有限元分析方法,其中骨盆由肌肉和韧带边界条件支撑,通过分布在实际附着部位的弹簧单元来施加这些条件。该分析与另一种分析进行了比较,在后一种分析中骨盆通过在骶髂关节处施加的固定边界条件来约束。特别是在两种分析中观察到的皮质骨应力应变场存在显著差异。研究发现,纳入肌肉和韧带边界条件可降低皮质骨内应力集中的发生率。

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