Stude Philipp, Lenz Melanie, Höffken Oliver, Tegenthoff Martin, Dinse Hubert
Department of Neurology, BG-Universitaetsklinikum Bergmannsheil Bochum, Buerkle-de-la-Camp-Platz 1, 44789, Bochum, Germany.
Neural Plasticity Laboratory, Institute for Neuroinformatics, Ruhr University, Bochum, Germany.
Eur J Neurosci. 2016 May;43(9):1156-60. doi: 10.1111/ejn.13224. Epub 2016 Apr 6.
Paired-pulse behaviour in the somatosensory cortex is an approach to obtain insights into cortical processing modes and to obtain markers of changes of cortical excitability attributable to learning or pathological states. Numerous studies have demonstrated suppression of the response to the stimulus that follows a first one after a short interval, but the underlying mechanisms remain elusive, although there is agreement that GABAergic mechanisms seem to play a crucial role. We therefore aimed to explore the influence of the GABAA agonist lorazepam on paired-pulse somatosensory evoked potentials (SEPs). We recorded and analysed SEPs after paired median nerve stimulation in healthy individuals before and after they had received a single dose of 2.5 mg of lorazepam as compared with a control group receiving placebo. Paired-pulse suppression was expressed as a ratio of the amplitudes of the second and the first peaks. We found that, after lorazepam application, paired-pulse suppression of the cortical N20 component remained unchanged, but suppression of the N20-P25 complex was significantly reduced, indicative of GABAergic involvement in intracortical processing. Our data suggest that lorazepam most likely enhances inhibition within the cortical network of interneurons responsible for creating paired-pulse suppression, leading to reduced inhibitory drive with a subsequently reduced amount of suppression. The results provide further evidence that GABAA -mediated mechanisms are involved in the generation of median nerve evoked paired-pulse suppression.
体感皮层中的配对脉冲行为是一种深入了解皮层处理模式以及获取与学习或病理状态相关的皮层兴奋性变化标志物的方法。众多研究已证实,在短时间间隔后,对跟随第一个刺激的第二个刺激的反应会受到抑制,但其潜在机制仍不清楚,尽管人们一致认为GABA能机制似乎起着关键作用。因此,我们旨在探讨GABAA激动剂劳拉西泮对配对脉冲体感诱发电位(SEP)的影响。我们在健康个体单次接受2.5毫克劳拉西泮前后,记录并分析了正中神经配对刺激后的SEP,并与接受安慰剂的对照组进行比较。配对脉冲抑制表示为第二个和第一个峰值幅度的比值。我们发现,应用劳拉西泮后,皮层N20成分的配对脉冲抑制保持不变,但N20-P25复合体的抑制明显降低,这表明GABA能参与了皮层内处理过程。我们的数据表明,劳拉西泮很可能增强了负责产生配对脉冲抑制的中间神经元皮层网络内的抑制作用,导致抑制驱动减弱,随后抑制量减少。这些结果进一步证明,GABAA介导的机制参与了正中神经诱发的配对脉冲抑制的产生。