Fernandes S R, Salvador R, de Carvalho M, Miranda P C
Annu Int Conf IEEE Eng Med Biol Soc. 2019 Jul;2019:5898-5901. doi: 10.1109/EMBC.2019.8857129.
Experimental studies on transcutaneous spinal cord direct current and magnetic stimulation (tsDCS and tsMS) show promising results in the neuromodulation of spinal sensory and motor pathways, with possible application in spinal functional rehabilitation. Modelling studies on the electric field (EF) distribution during tsDCS and tsMS are powerful tools to understand the underlying biophysics and to select and optimize stimulation protocols for a specific clinical target. The study presented here compares the EF during cervical tsDCS and tsMS. The EF predictions show the same spatial profiles along the cervical spinal cord using both types of stimulation. tsMS presents higher average magnitudes per spinal segment, with a maximum value of 14.61 V/m, whereas tsDCS is approximately 30 times lower, reaching 0.44 V/m. According to previous studies, tsDCS and tsMS induce EF values which are sufficient for spinal neuromodulation.
经皮脊髓直流电和磁刺激(tsDCS和tsMS)的实验研究表明,在脊髓感觉和运动通路的神经调节方面取得了有前景的结果,可能应用于脊髓功能康复。tsDCS和tsMS期间电场(EF)分布的建模研究是理解潜在生物物理学以及为特定临床目标选择和优化刺激方案的有力工具。本文介绍的研究比较了颈部tsDCS和tsMS期间的EF。EF预测表明,使用这两种刺激方式时,沿颈脊髓的空间分布相同。tsMS每个脊髓节段的平均强度更高,最大值为14.61 V/m,而tsDCS约低30倍,达到0.44 V/m。根据先前的研究,tsDCS和tsMS诱导的EF值足以进行脊髓神经调节。