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软组织不均匀性在磁外周神经刺激中的重要性。

Importance of soft tissue inhomogeneity in magnetic peripheral nerve stimulation.

作者信息

Kobayashi M, Ueno S, Kurokawa T

机构信息

Faculty of Medicine, University of Tokyo, Japan.

出版信息

Electroencephalogr Clin Neurophysiol. 1997 Oct;105(5):406-13. doi: 10.1016/s0924-980x(97)00035-0.

Abstract

In magnetic peripheral nerve stimulation with a figure-of-eight coil, a 'tangential-edge' coil orientation (the nerve is beneath the coil intersection and perpendicular to the coil wings) is ideal theoretically. However, some experimental results show that strong muscle responses are elicited with a 'symmetrical-tangential' coil orientation (the nerve is beneath the coil intersection and parallel to the coil wings), which is inconsistent with the cable theory. We hypothesized that the 10:1 conductivity difference between muscle and fat would cause inconsistent results during magnetic median nerve stimulation in the elbow, which was verified using an inhomogeneous volume conductor model. The induced electric fields were measured in a model composed of saline solutions of different concentrations divided by a cellophane sheet. A nerve was imagined along the boundary between the two solutions, and the coil was held in a 'symmetrical-tangential' position. Virtual cathodes, which were off the nerve in the homogeneous model, were on the nerve in the inhomogeneous model. The previous inconsistent results were explained by considering soft tissue inhomogeneity without any modification of the assumption in the cable theory that only the induced electric field component parallel to the nerve is responsible for nerve excitation.

摘要

在使用八字形线圈进行磁外周神经刺激时,理论上“切线边缘”线圈方向(神经位于线圈交叉点下方且垂直于线圈翼)是理想的。然而,一些实验结果表明,“对称切线”线圈方向(神经位于线圈交叉点下方且平行于线圈翼)会引发强烈的肌肉反应,这与电缆理论不一致。我们推测,肌肉与脂肪之间10:1的电导率差异会导致在肘部进行磁正中神经刺激时出现不一致的结果,这一点通过非均匀体积导体模型得到了验证。在一个由不同浓度盐溶液被玻璃纸隔开组成的模型中测量感应电场。设想一条神经位于两种溶液的边界处,并且将线圈置于“对称切线”位置。在均匀模型中偏离神经的虚拟阴极,在非均匀模型中则位于神经上。通过考虑软组织的非均匀性解释了之前不一致的结果,而无需对电缆理论中仅平行于神经的感应电场分量负责神经兴奋这一假设进行任何修改。

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