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Partially non-linear stimulation intensity-dependent effects of direct current stimulation on motor cortex excitability in humans

机译:直流电刺激对人运动皮层兴奋性的部分非线性刺激强度依赖性效应

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摘要

Transcranial direct current stimulation (tDCS) of the human motor cortex at an intensity of 1 mA with an electrode size of 35 cm2 has been shown to induce shifts of cortical excitability during and after stimulation. These shifts are polarity-specific with cathodal tDCS resulting in a decrease and anodal stimulation in an increase of cortical excitability. In clinical and cognitive studies, stronger stimulation intensities are used frequently, but their physiological effects on cortical excitability have not yet been explored. Therefore, here we aimed to explore the effects of 2 mA tDCS on cortical excitability. We applied 2 mA anodal or cathodal tDCS for 20 min on the left primary motor cortex of 14 healthy subjects. Cathodal tDCS at 1 mA and sham tDCS for 20 min was administered as control session in nine and eight healthy subjects, respectively. Motor cortical excitability was monitored by transcranial magnetic stimulation (TMS)-elicited motor-evoked potentials (MEPs) from the right first dorsal interosseous muscle. Global corticospinal excitability was explored via single TMS pulse-elicited MEP amplitudes, and motor thresholds. Intracortical effects of stimulation were obtained by cortical silent period (CSP), short latency intracortical inhibition (SICI) and facilitation (ICF), and I wave facilitation. The above-mentioned protocols were recorded both before and immediately after tDCS in randomized order. Additionally, single-pulse MEPs, motor thresholds, SICI and ICF were recorded every 30 min up to 2 h after stimulation end, evening of the same day, next morning, next noon and next evening. Anodal as well as cathodal tDCS at 2 mA resulted in a significant increase of MEP amplitudes, whereas 1 mA cathodal tDCS decreased corticospinal excitability. A significant shift of SICI and ICF towards excitability enhancement after both 2 mA cathodal and anodal tDCS was observed. At 1 mA, cathodal tDCS reduced single-pulse TMS-elicited MEP amplitudes and shifted SICI and ICF towards inhibition. No significant changes were observed in the other protocols. Sham tDCS did not induce significant MEP alterations. These results suggest that an enhancement of tDCS intensity does not necessarily increase efficacy of stimulation, but might also shift the direction of excitability alterations. This should be taken into account for applications of the stimulation technique using different intensities and durations in order to achieve stronger or longer lasting after-effects.
机译:研究表明,以1 mA的强度,电极尺寸为35 cm 2 的人类运动皮层经颅直流电刺激(tDCS)会引起刺激过程中和刺激后皮质兴奋性的改变。这些变化是阴极tDCS的极性特有的,导致皮质兴奋性降低和阳极刺激增加。在临床和认知研究中,经常使用更强的刺激强度,但尚未探讨它们对皮层兴奋性的生理影响。因此,本文旨在探讨2 mA tDCS对皮层兴奋性的影响。我们在14名健康受试者的左初级运动皮层上施加2 mA阳极或阴极tDCS 20分钟。分别在9位和8位健康受试者中以1 mA的阴极tDCS和20分钟的假tDCS作为对照。通过经颅磁刺激(TMS)引起的右第一背骨间肌的运动诱发电位(MEP)监测运动皮层兴奋性。通过单个TMS脉冲诱发的MEP振幅和运动阈值来探索整体皮质脊髓兴奋性。通过皮层沉默期(CSP),短暂潜伏期皮层内抑制(SICI)和促进(ICF)和I波促进获得皮层内刺激作用。上述协议以随机顺序记录在tDCS之前和之后。此外,在刺激结束后,同一天晚上,第二天早晨,第二天中午和第二天晚上之后的2小时内,每30分钟记录一次单脉冲MEP,运动阈值,SICI和ICF。阳极以及2 mA的阴极tDCS导致MEP振幅显着增加,而1 mA阴极tDCS降低了皮质脊髓兴奋性。观察到2 mA阴极和阳极tDCS后,SICI和ICF都朝着增加兴奋性的方向发生了明显变化。在1 mA时,阴极tDCS降低了单脉冲TMS引起的MEP幅度,并使SICI和ICF趋向抑制。在其他协议中未观察到重大变化。假tDCS没有引起明显的MEP改变。这些结果表明,tDCS强度的增强并不一定会增加刺激的功效,但可能还会改变兴奋性改变的方向。对于使用不同强度和持续时间的刺激技术的应用,应考虑到这一点,以便获得更强或更持久的后效。

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