Koch Giacomo, Franca Michele, Mochizuki Hitoshi, Marconi Barbara, Caltagirone Carlo, Rothwell John C
Sobell Department of Motor Neuroscience and Movement Disorders, Institute of Neurology, University College London, Queen Square, London WC1N 3BG, UK.
J Physiol. 2007 Jan 15;578(Pt 2):551-62. doi: 10.1113/jphysiol.2006.123562. Epub 2006 Nov 23.
A single TMS pulse (110% resting motor threshold, RMT) to the left dorsal premotor cortex (PMd) (CS2) suppresses the amplitude of motor evoked potentials (MEPs) from a test pulse (TS) over the right motor cortex (M1), and facilitates MEPs from the left motor cortex. We probed how this interaction was changed by a prior conditioning pulse over PMd (CS1) using a paired pulse TMS design. In the main experiments, the intensity of CS1 was 80% RMT. Basal suppression of right M1 was removed when CS1-CS2 was 1 ms or 5 ms with a similar tendency at 15 ms. Basal facilitation of left M1 was suppressed at CS1-CS2 of 5 ms. A similar time course was seen if CS2 was increased to 100% RMT, but there was no significant effect if CS1 was 70% RMT. Preconditioning PMd with continuous or intermittent theta burst repetitive TMS (cTBS, iTBS) abolished the basal CS2-TS interaction between premotor and motor cortices. Finally, if very short interstimulus intervals between CS1 and CS2 were explored to detect interactions similar to I-wave facilitation in M1, we found that the basal suppression of right M1 was abolished at CS1-CS2 intervals of 1.8 and 2.8 ms. We suggest that paired pulse TMS may be capable of investigating properties of intrinsic circuits in PMd and that their properties differ from those in the nearby M1. Paired TMS may be a useful method of studying the excitability of intrinsic circuits in non-primary areas of the motor system.
对左侧背侧运动前区皮质(PMd)(CS2)施加单个经颅磁刺激脉冲(110%静息运动阈值,RMT)可抑制右侧运动皮质(M1)上测试脉冲(TS)诱发的运动诱发电位(MEP)的幅度,并促进左侧运动皮质的MEP。我们使用配对脉冲经颅磁刺激设计探究了在PMd(CS1)上施加先前的条件刺激脉冲后这种相互作用是如何改变的。在主要实验中,CS1的强度为80%RMT。当CS1-CS2为1毫秒或5毫秒时,右侧M1的基础抑制作用消失,在15毫秒时也有类似趋势。左侧M1的基础易化作用在CS1-CS2为5毫秒时受到抑制。如果将CS2增加到100%RMT,也会出现类似的时间进程,但如果CS1为70%RMT,则没有显著影响。用连续或间歇性θ波爆发重复经颅磁刺激(cTBS,iTBS)对PMd进行预处理可消除运动前区皮质与运动皮质之间的基础CS2-TS相互作用。最后,如果探索CS1和CS2之间非常短的刺激间隔以检测类似于M1中I波易化的相互作用,我们发现在CS1-CS2间隔为1.8毫秒和2.8毫秒时,右侧M1的基础抑制作用消失。我们认为配对脉冲经颅磁刺激可能能够研究PMd中内在回路的特性,并且它们的特性与附近M1中的不同。配对经颅磁刺激可能是研究运动系统非初级区域内在回路兴奋性的一种有用方法。