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脊髓刺激中电流密度及相关参数分析

Analysis of current density and related parameters in spinal cord stimulation.

作者信息

Wesselink W A, Holsheimer J, Boom H B

机构信息

Institute for Biomedical Technology, University of Twente, Enschede, The Netherlands.

出版信息

IEEE Trans Rehabil Eng. 1998 Jun;6(2):200-7. doi: 10.1109/86.681186.

Abstract

A volume conductor model of the spinal cord and surrounding anatomical structures is used to calculate current (and current density) charge per pulse, and maximum charge density per pulse at the contact surface of the electrode in the dorsal epidural space, in the dorsal columns of the spinal cord and in the dorsal roots. The effects of various contact configurations (mono-, bi-, and tripole), contact area and spacing, pulsewidth and distance between contacts and spinal cord on these electrical parameters were investigated under conditions similar to those in clinical spinal cord stimulation. At the threshold stimulus of a large dorsal column fiber, current density and charge density per pulse at the contact surface were found to be highest (1.9.10(5) microA/cm2 and 39.1 microC/cm2.p, respectively) when the contact surface was only 0.7 mm2. When stimulating with a pulse of 500 microseconds, highest charge per pulse (0.92 microC/p), and the largest charge density per pulse in the dorsal columns (1.59 microC/cm2. p) occurred. It is concluded that of all stimulation parameters that can be selected freely, only pulsewidth affects the charge and charge density per pulse in the nervous tissue, whereas both pulsewidth and contact area strongly affect these parameters in the nonnervous tissue neighboring the electrode contacts.

摘要

利用脊髓及周围解剖结构的容积导体模型来计算每个脉冲的电流(及电流密度)电荷,以及在硬脊膜外间隙、脊髓后柱和背根中电极接触表面处每个脉冲的最大电荷密度。在类似于临床脊髓刺激的条件下,研究了各种接触配置(单极、双极和三极)、接触面积和间距、脉冲宽度以及接触点与脊髓之间的距离对这些电参数的影响。在大的后柱纤维的阈值刺激下,当接触表面仅为0.7平方毫米时,发现接触表面处每个脉冲的电流密度和电荷密度最高(分别为1.9×10⁵微安/平方厘米和39.1微库仑/平方厘米·脉冲)。当用500微秒的脉冲进行刺激时,出现了每个脉冲的最高电荷(0.92微库仑/脉冲)以及后柱中每个脉冲的最大电荷密度(1.59微库仑/平方厘米·脉冲)。得出的结论是,在所有可自由选择的刺激参数中,只有脉冲宽度会影响神经组织中每个脉冲的电荷和电荷密度,而脉冲宽度和接触面积都会强烈影响电极接触点附近非神经组织中的这些参数。

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