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经皮电流刺激模型:模拟与实验。

A model for transcutaneous current stimulation: simulations and experiments.

机构信息

Automatic Control Laboratory, ETH Zurich, Physikstrasse 3, 8092 Zurich, Switzerland.

出版信息

Med Biol Eng Comput. 2009 Mar;47(3):279-89. doi: 10.1007/s11517-008-0422-z. Epub 2008 Nov 13.

Abstract

Complex nerve models have been developed for describing the generation of action potentials in humans. Such nerve models have primarily been used to model implantable electrical stimulation systems, where the stimulation electrodes are close to the nerve (near-field). To address if these nerve models can also be used to model transcutaneous electrical stimulation (TES) (far-field), we have developed a TES model that comprises a volume conductor and different previously published non-linear nerve models. The volume conductor models the resistive and capacitive properties of electrodes, electrode-skin interface, skin, fat, muscle, and bone. The non-linear nerve models were used to conclude from the potential field within the volume conductor on nerve activation. A comparison of simulated and experimentally measured chronaxie values (a measure for the excitability of nerves) and muscle twitch forces on human volunteers allowed us to conclude that some of the published nerve models can be used in TES models. The presented TES model provides a first step to more extensive model implementations for TES in which e.g., multi-array electrode configurations can be tested.

摘要

已经开发出复杂的神经模型来描述人类动作电位的产生。这些神经模型主要用于模拟植入式电刺激系统,其中刺激电极靠近神经(近场)。为了确定这些神经模型是否也可用于经皮电刺激(TES)(远场),我们开发了一种 TES 模型,它包括一个容积导体和之前发表的不同的非线性神经模型。容积导体模型模拟了电极、电极-皮肤界面、皮肤、脂肪、肌肉和骨骼的电阻和电容特性。非线性神经模型用于根据容积导体中的电势场来推断神经激活。对人类志愿者进行模拟和实验测量的 chronaxie 值(衡量神经兴奋性的指标)和肌肉抽搐力的比较,使我们得出结论,一些已发表的神经模型可用于 TES 模型。所提出的 TES 模型为 TES 的更广泛模型实现提供了第一步,例如可以测试多阵列电极配置。

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