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Influence of stimulation intensity on paired-pulse suppression of human median nerve somatosensory evoked potentials

机译:刺激强度对人正中神经体感诱发电位成对脉冲抑制的影响

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Paired-pulse stimulation, the application of two stimuli in close succession, is a useful tool to investigate cortical excitability. Suppression of the second response after short interstimulus intervals characterizes paired-pulse behavior. Although paired-pulse suppression is often studied as a marker of cortical excitability in humans, little is known about the influence of stimulation intensity on paired-pulse suppression. To systematically explore the effect of stimulus intensity on paired-pulse suppression of median nerve somatosensory evoked potentials (MNSEPs), we recorded single-pulse or paired-pulse MNSEPs in healthy volunteers using stimulation intensities ranging from the sensory threshold to 1.2 times the motor threshold using interstimulus intervals of 10, 30, and 100 ms. Of the various somatosensory evoked potential components, only the N20-P25 component showed an effect of intensity, where higher intensities resulted in stronger paired-pulse suppression. However, when only intermediate intensities were considered, paired-pulse suppression was not or only weakly influenced. Our data suggest that stimulation intensity in contrast to single pulse-evoked MNSEPs has only a weak influence on the paired-pulse suppression of early MNSEPs. Paired-pulse suppression is believed to arise from inhibition generated by intracortical networks. The lack of intensity dependence within the range tested can be considered as a step toward creating invariance against fluctuations of stimulus intensity. Thus, intracortical computations as apparent in paired-pulse behavior might be characterized by different properties compared with feed-forward processing.
机译:成对脉冲刺激(连续两次施加刺激)是研究皮层兴奋性的有用工具。短暂的刺激间隔后第二反应的抑制表现为成对脉冲行为。尽管成对脉冲抑制通常被研究为人类皮层兴奋性的标志物,但关于刺激强度对成对脉冲抑制的影响知之甚少。为了系统地探索刺激强度对中枢神经体感诱发电位(MNSEPs)的双脉冲抑制的影响,我们记录了健康志愿者中单脉冲或双脉冲MNSEPs的刺激强度,范围从感觉阈到运动阈的1.2倍使用10、30和100毫秒的刺激间隔。在各种体感诱发电位组件中,只有N20-P25组件显示强度效应,其中较高的强度会导致更强的配对脉冲抑制。但是,如果仅考虑中间强度,则对成对脉冲抑制的影响不大或影响很小。我们的数据表明,与单脉冲诱发的MNSEPs相比,刺激强度仅对早期MNSEPs的成对脉冲抑制产生微弱的影响。据信成对脉冲抑制是由皮层内网络产生的抑制引起的。在测试范围内缺乏强度依赖性可以被认为是朝着对刺激强度的波动产生不变性的一个步骤。因此,与前馈处理相比,成对脉冲行为中明显的皮层内计算可能具有不同的特性。

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