首页> 外文期刊>The European Journal of Neuroscience >Transcranial direct current stimulation preconditioning modulates the effect of high-frequency repetitive transcranial magnetic stimulation in the human motor cortex.
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Transcranial direct current stimulation preconditioning modulates the effect of high-frequency repetitive transcranial magnetic stimulation in the human motor cortex.

机译:经颅直流电刺激预处理可调节人体运动皮层中的高频重复经颅磁刺激的效果。

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Experimental studies emphasize the importance of homeostatic plasticity as a mean of stabilizing the properties of neural circuits. In the present work we combined two techniques able to produce short-term (5-Hz repetitive transcranial magnetic stimulation, rTMS) and long-term (transcranial direct current stimulation, tDCS) effects on corticospinal excitability to evaluate whether and how the effects of 5-Hz rTMS can be tuned by tDCS preconditioning. Twelve healthy subjects participated in the study. Brief trains of 5-Hz rTMS were applied to the primary motor cortex at an intensity of 120% of the resting motor threshold, with recording of the electromyograph traces evoked by each stimulus of the train from the contralateral abductor pollicis brevis muscle. This interventional protocol was preconditioned by 15 min of anodal or cathodal tDCS delivered at 1.5 mA intensity. Our results showed that motor-evoked potentials (MEPs) increased significantly in size during trains of 5-Hz rTMS in the absence of tDCS preconditioning. After facilitatory preconditioning with anodal tDCS, 5-Hz rTMS failed to produce progressive MEP facilitation. Conversely, when 5-Hz rTMS was preceded by inhibitory cathodal tDCS, MEP facilitation was not abolished. These findings may give insight into the mechanisms of homeostatic plasticity in the human cerebral cortex, suggesting also more suitable applications of tDCS in a clinical setting.
机译:实验研究强调了稳态可塑性作为稳定神经回路特性的手段的重要性。在当前的工作中,我们结合了两种能够对皮质脊髓兴奋性产生短期(5-Hz重复经颅磁刺激,rTMS)和长期(经颅直流电刺激,tDCS)影响的技术,以评估5 -Hz rTMS可以通过tDCS预处理进行调整。十二名健康受试者参加了研究。将5-Hz rTMS的简短训练以静息运动阈值的120%的强度应用于初级运动皮层,并记录火车的每次刺激从对侧外展小腿短肌肌肉诱发的肌电描记迹线。通过以1.5 mA强度递送的15分钟的阳极或阴极tDCS预处理此干预方案。我们的结果表明,在没有tDCS预处理的情况下,在5 Hz rTMS训练期间,电机诱发电位(MEP)的大小显着增加。在使用阳极tDCS进行便利性预处理后,5 Hz rTMS无法产生进行性MEP促进作用。相反,当5-Hz rTMS之前是抑制性阴极tDCS时,MEP促进作用就不会消失。这些发现可能有助于深入了解人类大脑皮层中的稳态可塑性机制,这也暗示了tDCS在临床环境中的更合适的应用。

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