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Anodal transcutaneous spinal direct current stimulation (tsDCS) selectively inhibits the synaptic efficacy of nociceptive transmission at spinal cord level

机译:阳极经皮脊髓直流电刺激(tsDCS)在脊髓水平选择性抑制伤害性传递的突触功效

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摘要

Recently studies have aimed at developing transcutaneous spinal direct current stimulation (tsDCS) as a non-invasive technique to modulate spinal function in humans. Independent studies evaluating its after-effects on nociceptive or non-nociceptive somatosensory responses have reported comparable effects suggesting that tsDCS impairs axonal conduction of both the spino-thalamic and the medial lemniscus tracts. The present study aimed to better understand how tsDCS affects, in humans, the spinal transmission of nociceptive and non-nociceptive somatosensory inputs. We compared the after-effects of anodal low-thoracic, anodal cervical and sham tsDCS on the perception and brain responses elicited by laser stimuli selectively activating Aδ-thermonociceptors of the spinothalamic system and vibrotactile stimuli selectively activating low threshold Aβ-mechanoreceptors of the lemniscal system, delivered to the hands and feet. Low-thoracic tsDCS selectively and significantly affected the LEP-N2 wave elicited by nociceptive stimulation of the lower limbs, without affecting the LEP-N2 wave elicited by nociceptive stimulation of the upper limbs, and without affecting the SEP-N2 wave elicited by vibrotactile stimulation of either limb. This selective and segmental effect indicates that the neuromodulatory after-effects of tsDCS cannot be explained by anodal blockade of axonal conduction and, instead, are most probably due to a segmental effect on the synaptic efficacy of the local processing and/or transmission of nociceptive inputs in the dorsal horn.
机译:最近的研究旨在开发经皮脊柱直流电刺激(tsDCS)作为调节人类脊柱功能的非侵入性技术。评估其对伤害性或非伤害性体感反应后效的独立研究已报告了可比的效果,表明tsDCS损害了脊椎丘脑和腓肠肌内侧的轴突传导。本研究旨在更好地了解tsDCS如何在人体中影响伤害性和非伤害性体感输入的脊柱传递。我们比较了阳极低胸,阳极宫颈和假tsDCS对激光刺激选择性激活脊椎丘脑系统的Aδ-热感受器和振动触觉刺激选择性激活睑板系统的低阈值Aβ-机械感受器引起的知觉和脑反应的后效应,传递到手脚。低胸tsDCS有选择地显着影响下肢伤害感受刺激引起的LEP-N2波,而不影响上肢伤害感受刺激引起的LEP-N2波,并且不影响触觉刺激引起的SEP-N2波任一肢。这种选择性和分段作用表明tsDCS的神经调节后效应不能通过轴突传导的阳极阻断来解释,相反,很可能是由于分段作用对伤害性输入的局部加工和/或传递的突触功效在背角。

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