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An experimental method for the application of lateral muscle loading and its effect on femoral strain distributions.

机译:一种应用侧向肌肉负荷的实验方法及其对股骨应变分布的影响。

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Experimental models that have been used to evaluate hip loading and the effect of hip implants on bone often use only a head load and abductor load. Anatomic considerations and in vivo measurements have lead several investigators to suggest that these models are inaccurate because they do not incorporate the loads imposed by additional muscles. The aim of this study was to evaluate the strains in the proximal and mid diaphysis of the femur for five hip loading models, one with a head load and abductor load only and four which incorporated lateral muscle loads as well. Head load to body weight load ratios were used to evaluate the physiologic accuracy of these models and strains were compared to determine the extent of strain changes as a function of model complexity. All models which incorporated additional lateral muscle loads more accurately simulated head load to body-weight load ratios than the simple abductor-only model. The model which incorporated a coupled vastus lateralis and iliotibial band load in addition to the abductor load provided the simplest configuration with a reasonable body-weight to head-load ratio.
机译:用于评估髋关节负荷和髋关节植入物对骨骼的影响的实验模型通常仅使用头部负荷和外展肌负荷。解剖学上的考虑和体内测量结果导致一些研究者认为这些模型不准确,因为它们没有考虑其他肌肉施加的负荷。这项研究的目的是评估五个髋关节负荷模型的股骨近端和中骨干骨的应变,其中一种仅具有头部负荷和外展器负荷,另外四种还包含侧向肌肉负荷。头部负荷与体重负荷的比值用于评估这些模型的生理准确性,并比较菌株以确定菌株变化的程度与模型复杂度的关系。与简单的仅绑架者模型相比,所有结合了额外侧肌载荷的模型都可以更准确地模拟头部载荷与体重的载荷比。除了外展肌负荷外,该模型还结合了股外侧肌和ili胫束带负荷,提供了最简单的配置,并具有合理的体重与头部负荷比。

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