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被动元件对腰椎肌肉骨骼模型椎间盘内压力和肌肉激活预测的影响。

Influence of passive elements on prediction of intradiscal pressure and muscle activation in lumbar musculoskeletal models.

机构信息

Yangzhi Rehabilitation Hospital, Sunshine Rehabilitation Centre, Tongji University School of Medicine, Shanghai 201619, China; Department of Rehabilitation Sciences, Tongji University School of Medicine, Shanghai 200092, China.

Sport and Health Research Center, Physical Education Department, Tongji University, Shanghai 200092, China.

出版信息

Comput Methods Programs Biomed. 2019 Aug;177:39-46. doi: 10.1016/j.cmpb.2019.05.018. Epub 2019 May 18.

Abstract

BACKGROUND AND OBJECTIVE

The objective of this study was to investigate the effect of incorporating various passive elements, which could represent combined or individual effects of intervertebral disc, facet articulation and ligaments, on the prediction of lumbar muscle activation and L4-L5 intradiscal pressure.

METHODS

The passive elements representing the intervertebral disc, facet articulations, and ligaments were added to the existed lumbar musculoskeletal model with nonlinear rotational stiffness or force-strain relationships. The model was fed with kinematics of trunk flexion, extension, axial rotation and lateral bending to calculate muscle activation and L4-L5 intradiscal pressure.

RESULTS

In the trunk axial rotation, the intradiscal pressure values predicted by the models with elements representing facet articulation were much higher than that predicated by models removing these elements. In the trunk flexion, the models with passive elements showed lower muscle activation of extensors than model with no passive elements. At the end of trunk flexion, extension, axial rotation and lateral bending, the intradiscal pressure values predicted by model with intact passive elements were 120.6%, 92.5%, 334.8% and 74.9% of the values predicted by model with no passive elements, respectively.

CONCLUSIONS

Caution must be taken while modeling facet articulation as elements with rotational stiffness, as they may lead to overestimation of intradiscal pressure in trunk axial rotation. The inclusion of ligaments as spring-like elements may improve the simulation of flexion-relaxation phenomenon in trunk flexion. Future models considering detailed properties of passive elements are needed to allow more access to understanding the mechanics of the lumbar spine.

摘要

背景与目的

本研究旨在探讨在预测腰椎肌肉激活和 L4-L5 椎间盘内压力时,加入各种被动元件(可代表椎间盘、关节突关节和韧带的组合或单独作用)对预测的影响。

方法

将代表椎间盘、关节突关节和韧带的被动元件添加到具有非线性旋转刚度或力-应变关系的现有腰椎肌肉骨骼模型中。该模型采用躯干屈伸、轴向旋转和侧屈的运动学来计算肌肉激活和 L4-L5 椎间盘内压力。

结果

在躯干轴向旋转中,代表关节突关节的元件的模型预测的椎间盘内压力值远高于去除这些元件的模型预测的椎间盘内压力值。在躯干前屈中,具有被动元件的模型显示伸肌的肌肉激活低于没有被动元件的模型。在躯干前屈、后伸、轴向旋转和侧屈结束时,完整被动元件模型预测的椎间盘内压力值分别为无被动元件模型预测值的 120.6%、92.5%、334.8%和 74.9%。

结论

在将关节突关节建模为具有旋转刚度的元件时应谨慎,因为它们可能导致躯干轴向旋转时椎间盘内压力的高估。将韧带作为类似弹簧的元件包括在内可能会改善躯干前屈中屈伸松弛现象的模拟。需要考虑详细的被动元件特性的未来模型,以便更深入地了解腰椎力学。

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