Model of Electrical Stimulation of Back Muscles in the Treatment of Scoliosis

T. S. Vorontsova, M. V. Davydov
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引用次数: 0

Abstract

The article presents a three-dimensional model of the tissues of the human back in the ZBrush and SolidWorks software packages. Modeling of the spinal column with a bend, muscles, adipose tissue and skin was performed. Using the COMSOL Multiphysics environment, the effects of electrical stimulation on biological objects are modeled, and characteristics are determined. When modeling, in the properties of each biological tissue, the values of electrical conductivity and relative permittivity were set, the electrodes were adjusted, a grid was created to divide the models into smaller parts and elements, and the required frequency was adjusted. To verify the simulation results, a study was carried out on the patient, the calculation and analysis of the results obtained. The developed models can be used in clinical medicine to determine the strength of the stimulating current and set the parameters of electrical stimulation. When building a model, one can change the thickness of adipose tissue, skin, muscle and bone sizes, change the size of the electrodes, and thereby select the most optimal parameters for electrical stimulation. Models can be used in the development of the most effective method of electrical stimulation and the scheme for applying electrodes for a certain type of scoliosis.
电刺激背部肌肉治疗脊柱侧凸的模型
本文在ZBrush和SolidWorks软件包中介绍了人体背部组织的三维模型。进行脊柱弯曲、肌肉、脂肪组织和皮肤的建模。利用COMSOL Multiphysics环境,模拟电刺激对生物物体的影响,并确定其特征。建模时,在每个生物组织的属性中,设置电导率和相对介电常数的值,调整电极,创建网格将模型划分为更小的部分和单元,并调整所需的频率。为了验证仿真结果,对患者进行了研究,对得到的结果进行了计算和分析。所建立的模型可用于临床医学中确定刺激电流的强度和设置电刺激的参数。在建立模型时,人们可以改变脂肪组织的厚度、皮肤、肌肉和骨骼的大小,改变电极的大小,从而选择最优的电刺激参数。模型可用于制定最有效的电刺激方法和特定类型脊柱侧凸的电极应用方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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