磁刺激治疗尿失禁的电流分布优化研究。

M Odagaki, K Suga, T Sasaki, H Hosaka
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引用次数: 0

摘要

据报道,磁刺激可以有效地消除尿失禁。然而,由于这种疗法的功率转换效率较差,并且电流会泄漏到刺激目标以外的区域,因此这种疗法尚未被确立为一种实用的治疗尿失禁的方法。因此,有必要开发磁刺激器,以更有效地刺激括约肌和周围神经,并比现有的更方便。通过使用大直径线圈,磁刺激方法比电刺激方法在更宽的靶区域上提供更大的电流分布,并且线圈的放置可以相对容易地改变以获得更好的治疗效果。我们尝试用女性腹部的计算机模拟模型,在生物组织电导率的基础上模拟感应电流密度的分布。我们通过改变刺激器线圈的位置和大小来确定哪种刺激方法最有效。采用遗传算法(GA)进行优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on optimization for current distribution in magnetic stimulation therapy for urinary incontinence.

It has been reported that magnetic stimulation effectively eliminates urinary incontinence. However, this type of therapy has not been established as a practical treatment for urinary incontinence because of its poor power conversion efficiency and the leakage of current to regions other than that of the target of stimulation. It is therefore necessary to develop magnetic stimulators that are more efficient in stimulating the sphincter muscles and the peripheral nerves, and are more convenient than those presently available. By using a large-diameter coil, the magnetic stimulation method offers a larger current distribution over a wider area of the target region than electrical stimulation method, and the placement of the coil can be relatively easily changed to obtain better therapeutic results. We attempted, with a computer simulation model of the female abdomen, to simulate the distribution of the induced current density on the basis of biological tissue conductivity. We determined which method of stimulation is the most efficient by varying the stimulator coil location and size. A genetic algorithm (GA) was used for optimization.

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