Ragert Patrick, Becker Michael, Tegenthoff Martin, Pleger Burkhard, Dinse Hubert R
Institute for Neuroinformatics, Theoretical Biology, Ruhr-University, D-44780 Bochum, Germany.
Neurosci Lett. 2004 Feb 12;356(2):91-4. doi: 10.1016/j.neulet.2003.11.034.
Repetitive transcranial magnetic stimulation (rTMS) has been shown to alter cortical processing within primary motor cortex dependent on the choice of stimulation variables. However, little is known about the effects of TMS in other cortical areas such as the primary somatosensory cortex (SI). Here we asked whether high-frequency (5 Hz) rTMS applied over the left SI evokes sustained changes in cortical excitability. To assess excitability changes, we applied a paired-pulse protocol consisting of paired electrical stimulation of the median nerve using an interstimulus interval of 30 ms and recordings of somatosensory evoked potentials. For ipsilateral SI we found that 1 h after termination of 5 Hz rTMS applied over the left SI with a figure-of-eight coil there was a sustained suppression of the normally present paired-pulse inhibition. Latencies and N20 amplitudes of the first peak remained unchanged. No changes of paired-pulse behavior were observed in the contralateral SI that was not TMS stimulated. The sustained excitability enhancement in SI is discussed in respect to previous findings regarding an improvement of tactile discrimination behavior by rTMS.
重复经颅磁刺激(rTMS)已被证明可根据刺激变量的选择改变初级运动皮层内的皮层处理过程。然而,对于TMS在其他皮层区域(如初级体感皮层(SI))的作用知之甚少。在这里,我们研究了施加于左侧SI的高频(5Hz)rTMS是否会引起皮层兴奋性的持续变化。为了评估兴奋性变化,我们采用了一种配对脉冲方案,包括使用30ms的刺激间隔对正中神经进行配对电刺激,并记录体感诱发电位。对于同侧SI,我们发现,使用8字形线圈在左侧SI施加5Hz rTMS终止1小时后,正常存在的配对脉冲抑制受到持续抑制。第一个峰值的潜伏期和N20波幅保持不变。在未接受TMS刺激的对侧SI中未观察到配对脉冲行为的变化。结合先前关于rTMS改善触觉辨别行为的研究结果,对SI中持续的兴奋性增强进行了讨论。