首页> 美国卫生研究院文献>The Journal of Neuroscience >Preconditioning of Low-Frequency Repetitive Transcranial Magnetic Stimulation with Transcranial Direct Current Stimulation: Evidence for Homeostatic Plasticity in the Human Motor Cortex
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Preconditioning of Low-Frequency Repetitive Transcranial Magnetic Stimulation with Transcranial Direct Current Stimulation: Evidence for Homeostatic Plasticity in the Human Motor Cortex

机译:经颅直流电刺激的低频重复经颅磁刺激的预处理:人类运动皮层体内稳态可塑性的证据。

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摘要

Recent experimental work in animals has emphasized the importance of homeostatic plasticity as a means of stabilizing the properties of neuronal circuits. Here, we report a phenomenon that indicates a homeostatic pattern of cortical plasticity in healthy human subjects. The experiments combined two techniques that can produce long-term effects on the excitability of corticospinal output neurons: transcranial direct current stimulation (TDCS) and repetitive transcranial magnetic stimulation (rTMS) of the left primary motor cortex. “Facilitatory preconditioning” with anodal TDCS caused a subsequent period of 1 Hz rTMS to reduce corticospinal excitability to below baseline levels for >20 min. Conversely, “inhibitory preconditioning” with cathodal TDCS resulted in 1 Hz rTMS increasing corticospinal excitability for at least 20 min. No changes in excitability occurred when 1 Hz rTMS was preceded by sham TDCS. Thus, changing the initial state of the motor cortex by a period of DC polarization reversed the conditioning effects of 1 Hz rTMS. These preconditioning effects of TDCS suggest the existence of a homeostatic mechanism in the human motor cortex that stabilizes corticospinal excitability within a physiologically useful range.
机译:最近在动物中进行的实验工作强调了稳态可塑性作为稳定神经元回路特性的一种手段的重要性。在这里,我们报告的现象表明健康的人类受试者中皮质可塑性的稳态模式。实验结合了两种可以对皮质脊髓输出神经元的兴奋性产生长期影响的技术:经颅直流电刺激(TDCS)和对左主要运动皮层的重复经颅磁刺激(rTMS)。阳极TDCS的“促进性预处理”导致随后的1 Hz rTMS周期,使皮质脊髓兴奋性降低至基线水平以下> 20分钟。相反,用阴极TDCS进行“抑制性预处理”会导致1 Hz rTMS至少在20分钟内增加皮质脊髓兴奋性。假TDCS在1 Hz rTMS之前,兴奋性没有变化。因此,通过一段直流极化改变运动皮层的初始状态可以逆转1 Hz rTMS的调节作用。 TDCS的这些预处理效应表明,人类运动皮层中存在一种稳态机制,该机制可将皮质脊髓兴奋性稳定在生理上有用的范围内。

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