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The effect of inter-electrode distance on the electric field distribution during transcutaneous lumbar spinal cord direct current stimulation

机译:电极间距对经皮腰椎直流电刺激过程中电场分布的影响

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Previous studies have indicated potential neuromodulation of the spinal circuitry by transcutaneous spinal direct current stimulation (tsDCS), such as changes in motor unit recruitment, shortening of the peripheral silent period and interference with supraspinal input to lower motor neurons. All of these effects were dependent on the polarity of the electrodes. The present study investigates how the distance between the electrodes during tsDCS influences the electric field's (E-field) spatial distribution in the lumbar and sacral spinal cord (SC). The electrodes were placed longitudinally along the SC, with the target electrode over the lumbar spine, and the return electrode above the former, considering four different distances (4, 8, 12 and 16 cm from the target). A fifth configuration was also tested with the return electrode over the right deltoid muscle. Peak values of the E-field's magnitude are found in the lumbo-sacral region of the SC for all tested configurations. Increasing the distance between the electrodes results in a wider spread of the E-field magnitude distribution along the SC, with larger maximum peak values and a smoother variation. The fifth configuration does not present the highest maximum values when compared to the other configurations. The results indicate that the choice of the return electrode position relative to the target can influence the distribution and the range of values of the E-field magnitude in the SC. Possible clinical significance of the observed effects will be discussed.
机译:先前的研究表明,经皮脊柱直流电刺激(tsDCS)可能会对脊柱回路进行神经调节,例如运动单位募集的变化,外围静默期的缩短以及对下运动神经元的脊髓上输入的干扰。所有这些作用都取决于电极的极性。本研究调查了tsDCS期间电极之间的距离如何影响腰the骨脊髓(SC)中电场(E场)的空间分布。电极沿SC纵向放置,目标电极在腰椎上方,返回电极在腰椎上方,考虑四个不同的距离(距目标4、8、12和16厘米)。还测试了第五种配置,其中返回电极位于右三角肌上方。对于所有测试配置,在SC的腰-区域都可以找到E场幅度的峰值。电极之间的距离增加会导致沿SC的电场强度分布分布更宽,最大峰值更大,变化更平滑。与其他配置相比,第五种配置没有最高值。结果表明,相对于靶材的返回电极位置的选择会影响SC中电场强度值的分布和范围。将讨论观察到的影响的可能的临床意义。

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