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一个关于脊柱负荷向骨盆和腿部传递过程中肌肉力量的生物力学模型。

A biomechanical model on muscle forces in the transfer of spinal load to the pelvis and legs.

作者信息

Hoek van Dijke G A, Snijders C J, Stoeckart R, Stam H J

机构信息

Department of Biomedical Physics and Technology, Faculty of Medicine and Allied Health Sciences, Erasmus University, Rotterdam, The Netherlands.

出版信息

J Biomech. 1999 Sep;32(9):927-33. doi: 10.1016/s0021-9290(99)00085-8.

Abstract

Based on musculoskeletal anatomy of the lower back, abdominal wall, pelvis and upper legs, a biomechanical model has been developed on forces in the load transfer through the pelvis. The aim of this model is to obtain a tool for analyzing the relations between forces in muscles, ligaments and joints in the transfer of gravitational and external load from the upper body via the sacroiliac joints to the legs in normal situations and pathology. The study of the relation between muscle coordination patterns and forces in pelvic structures, in particular the sacroiliac joints, is relevant for a better understanding of the aetiology of low back pain and pelvic pain. The model comprises 94 muscle parts, 6 ligaments and 6 joints. It enables the calculation of forces in pelvic structures in various postures. The calculations are based on a linear/non-linear optimization scheme. To gain a better understanding of the function of individual muscles and ligaments, deviant properties of these structures can be preset. The model is validated by comparing calculations with EMG data from the literature. For agonistic muscles, good agreement is found between model calculations and EMG data. Antagonistic muscle activity is underestimated by the model. Imposed activity of modelled antagonistic muscles has a minor effect on the mutual proportions of agonistic muscle activities. Simulation of asymmetric muscle weakness shows higher activity of especially abdominal muscles.

摘要

基于下背部、腹壁、骨盆和大腿的肌肉骨骼解剖结构,已开发出一种关于通过骨盆进行负荷传递时力的生物力学模型。该模型的目的是获得一种工具,用于分析在正常情况和病理状态下,从上身经骶髂关节到腿部的重力和外部负荷传递过程中,肌肉、韧带和关节中的力之间的关系。研究肌肉协调模式与骨盆结构(特别是骶髂关节)中的力之间的关系,对于更好地理解下背痛和骨盆痛的病因具有重要意义。该模型包括94个肌肉部分、6条韧带和6个关节。它能够计算各种姿势下骨盆结构中的力。计算基于线性/非线性优化方案。为了更好地理解单个肌肉和韧带的功能,可以预设这些结构的异常特性。通过将计算结果与文献中的肌电图数据进行比较来验证该模型。对于主动肌,模型计算结果与肌电图数据之间有良好的一致性。该模型低估了拮抗肌的活动。对模拟拮抗肌施加活动对主动肌活动的相互比例影响较小。不对称肌肉无力的模拟显示,尤其是腹部肌肉的活动更高。

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