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Effects of repetitive transcranial magnetic stimulation and trans-spinal direct current stimulation associated with treadmill exercise in spinal cord and cortical excitability of healthy subjects: A triple-blind randomized and sham-controlled study

机译:跑步机锻炼对健康受试者的脊髓和皮层兴奋性的重复经颅磁刺激和经脊椎直流电刺激的影响:一项三盲随机和假对照研究

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摘要

Repetitive transcranial magnetic stimulation (rTMS) over motor cortex and trans-spinal direct current stimulation (tsDCS) modulate corticospinal circuits in healthy and injured subjects. However, their associated effects with physical exercise is still not defined. This study aimed to investigate the effect of three different settings of rTMS and tsDCS combined with treadmill exercise on spinal cord and cortical excitability of healthy subjects. We performed a triple blind, randomized, sham-controlled crossover study with 12 healthy volunteers who underwent single sessions of rTMS (1Hz, 20Hz and Sham) and tsDCS (anodal, cathodal and Sham) associated with 20 minutes of treadmill walking. Cortical excitability was assessed by motor evoked potential (MEP) and spinal cord excitability by the Hoffmann reflex (Hr), nociceptive flexion reflex (NFR) and homosynaptic depression (HD). All measures were assessed before, immediately, 30 and 60 minutes after the experimental procedures. Our results demonstrated that anodal tsDCS/treadmill exercise reduced MEP’s amplitude and NFR’s area compared to sham condition, conversely, cathodal tsDCS/treadmill exercise increased NFR’s area. High-frequency rTMS increased MEP’s amplitude and NFR’s area compared to sham condition. Anodal tsDCS/treadmill exercise and 20Hz rTMS/treadmill exercise reduced Hr amplitude up to 30 minutes after stimulation offset and no changes were observed in HD measures. We demonstrated that tsDCS and rTMS combined with treadmill exercise modulated cortical and spinal cord excitability through different mechanisms. tsDCS modulated spinal reflexes in a polarity-dependent way acting at local spinal circuits while rTMS probably promoted changes in the presynaptic inhibition of spinal motoneurons. In addition, the association of two neuromodulatory techniques induced long-lasting changes.
机译:运动皮层上的反复经颅磁刺激(rTMS)和脊椎直流电刺激(tsDCS)可以调节健康和受伤受试者的皮质脊髓回路。然而,它们与体育锻炼的相关影响仍未确定。这项研究旨在研究三种不同设置的rTMS和tsDCS结合跑步机运动对健康受试者的脊髓和皮质兴奋性的影响。我们对12名健康志愿者进行了三重盲目,随机,假对照的交叉研究,这些志愿者分别经过了20分钟的跑步机行走,分别接受了rTMS(1Hz,20Hz和Sham)和tsDCS(阳极,阴极和Sham)的单次锻炼。通过运动诱发电位(MEP)评估皮质兴奋性,通过霍夫曼反射(Hr),伤害性屈曲反射(NFR)和高突触性抑郁症(HD)评估脊髓兴奋性。在实验程序之前,之后,30分钟和60分钟后评估所有措施。我们的结果表明,与假手术条件相比,阳极tsDCS /跑步机运动减少了MEP的振幅和NFR的面积,反之,阴极tsDCS /跑步机运动则增加了NFR的面积。高频rTMS相比伪造情况增加了MEP的振幅和NFR的面积。刺激偏移后,阳极tsDCS /跑步机运动和20Hz rTMS /跑步机运动可在长达30分钟的时间内降低Hr振幅,并且高清测量中未观察到变化。我们证明了tsDCS和rTMS结合跑步机锻炼通过不同的机制调节了皮层和脊髓的兴奋性。 tsDCS以极性依赖的方式调节脊髓反射,作用于局部脊髓回路,而rTMS可能促进了突触前对神经元的抑制。另外,两种神经调节技术的结合引起了持久的变化。

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