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Comparison of spinal cord stimulation profiles from intra- and extradural electrode arrangements by finite element modelling

机译:通过有限元建模比较来自内部和外部电极布置的脊髓刺激分布

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摘要

Spinal cord stimulation currently relies on extradural electrode arrays that are separated from the spinal cord surface by a highly conducting layer of cerebrospinal fluid. It has recently been suggested that intradural placement of the electrodes in direct contact with the pial surface could greatly enhance the specificity and efficiency of stimulation. The present computational study aims at quantifying and comparing the electrical current distributions as well as the spatial recruitment profiles resulting from extra- and intra-dural electrode arrangements. The electrical potential distribution is calculated using a 3D finite element model of the human thoracic spinal canal. The likely recruitment areas are then obtained using the potential as input to an equivalent circuit model of the pre-threshold axonal response. The results show that the current threshold to recruitment of axons in the dorsal column is more than an order of magnitude smaller for intradural than extradural stimulation. Intradural placement of the electrodes also leads to much higher contrast between the stimulation thresholds for the dorsal root entry zone and the dorsal column, allowing better focusing of the stimulus.
机译:脊髓刺激当前依赖于硬膜外电极阵列,其通过高脊髓性脑脊髓液层与脊髓表面分开。最近已经提出,与硬脑膜表面直接接触的电极的硬膜内放置可以大大提高刺激的特异性和效率。当前的计算研究旨在量化和比较由硬膜外和硬膜内电极布置产生的电流分布以及空间募集曲线。使用人胸椎管的3D有限元模型计算电势分布。然后使用电势作为阈值前轴突反应的等效电路模型的输入来获得可能的募集区域。结果表明,硬膜内刺激的当前阈值在硬脊膜内募集的轴突比硬膜外刺激小一个数量级。电极的硬膜内放置还导致背根进入区和背柱的刺激阈值之间的对比度更高,从而使刺激更好地聚焦。

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