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通过包含多关节肌肉和具有刚度的关节的模型预测的腰椎最大努力和肌肉募集模式。

Lumbar spine maximum efforts and muscle recruitment patterns predicted by a model with multijoint muscles and joints with stiffness.

作者信息

Stokes I A, Gardner-Morse M

机构信息

Department of Orthopaedics and Rehabilitation, University of Vermont, Burlington 05405.

出版信息

J Biomech. 1995 Feb;28(2):173-86. doi: 10.1016/0021-9290(94)e0040-a.

DOI:10.1016/0021-9290(94)e0040-a
PMID:7896860
Abstract

The transmission of load through the lumbar spine was analyzed in a model of the five lumbar vertebrae, the sacrum/pelvis and the thorax, and 66 symmetric pairs of multijoint muscles. The model was used to test the hypotheses that (1) the need to maintain equilibrium simultaneously at all vertebral levels precludes simultaneous maximum activation of synergistic muscles and (2) that the maximum loads which could be carried by the spine and the degree of muscle activation increases with increasing motion segment stiffness. Maximum moments applied to T12 were calculated for moments in three principal directions, subject to equilibrium at all six joints and to constraints on the maximum muscle stress and intervertebral displacements. A model with realistic motion segment stiffness predicted maximum efforts between 1.4 and 3.3 times greater than a model with 'ball-and-socket' joints, and in better agreement with published results from maximum effort experiments. The differences in maximal effort were greater than the moments transmitted through the joints. While muscle activation levels were greater, many synergistic muscles were still submaximally activated. Antagonistic muscles were recruited to maintain multijoint equilibrium. We concluded that (1) muscle activations permitted in single anatomic level analyses are generally not compatible with equilibrium at other levels; (2) the effect of moment transmission in the joints gives a more realistic representation of the lumbar spine.

摘要

在一个包含五个腰椎、骶骨/骨盆和胸廓以及66对对称多关节肌肉的模型中,分析了腰椎的负荷传递情况。该模型用于检验以下假设:(1)在所有椎体水平同时维持平衡的需求排除了协同肌肉同时最大程度激活的可能性;(2)脊柱能够承受的最大负荷以及肌肉激活程度会随着运动节段刚度的增加而增加。在六个关节均处于平衡状态且最大肌肉应力和椎间位移受到限制的条件下,计算了施加于T12的三个主要方向力矩的最大力矩。一个具有实际运动节段刚度的模型预测的最大作用力比一个具有“球窝”关节的模型大1.4至3.3倍,并且与最大作用力实验的已发表结果更为吻合。最大作用力的差异大于通过关节传递的力矩。虽然肌肉激活水平更高,但许多协同肌肉仍未达到最大激活程度。拮抗肌被募集以维持多关节平衡。我们得出结论:(1)在单一解剖水平分析中允许的肌肉激活通常与其他水平的平衡不兼容;(2)关节中力矩传递的效应能更真实地反映腰椎情况。

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