Bäumer Tobias, Bock Franka, Koch Giacomo, Lange Rüdiger, Rothwell John C, Siebner Hartwig R, Münchau Alexander
Department of Neurology, University Medical Centre Hamburg-Eppendorf, Germany.
J Physiol. 2006 May 1;572(Pt 3):857-68. doi: 10.1113/jphysiol.2006.104901.
We explored interhemispheric facilitation (IHF) between (a) left and right primary motor cortex (M1) and (b) left dorsal premotor (dPM) and right M1 in 20 right-handed healthy human subjects using a paired pulse transcranial magnetic stimulation (TMS) protocol. A conditioning TMS pulse (CP) applied to left M1 or dPM with an intensity of 80% and 60% active motor threshold (CP(80%AMT) and CP(60%AMT), respectively) was followed by a test pulse (TP) over right M1 induced by anterior-posterior- or posterior-anterior- (TP(AP), TP(PA)) directed currents in the brain at interstimulus intervals (ISIs) of 3-8 and 10 ms. EMG was recorded from left first dorsal interosseous muscle. In the main experimental condition IHF was evoked by CP(80%AMT) over left M1 and TPAP at ISIs of 6 and 8 ms. The same CP(80%AMT) produced IHF at an ISI of 8 ms when applied over left dPM but only with TP(PA). In addition, when CP(60%AMT) was given to M1, IHF was present at an ISI of 6 ms (but not 8 ms) when followed by TP(PA), indicating that IHF elicited over dPM was not caused by current spread of the conditioning pulse to M1. We conclude that IHF can be induced differentially by conditioning M1 and dPM using subthreshold CP. These facilitatory interactions depended on the intensity and ISI of the CP as well as the current flow direction of the TP. We suggest that not only do the CPs activate separate anatomical pathways but also that these pathways project to different populations ofinterneurons in the receiving M1. These may correspond to elements involved in the generation of I3 and I1 waves, respectively.
我们使用配对脉冲经颅磁刺激(TMS)方案,在20名右利手健康人类受试者中,探究了(a)左右初级运动皮层(M1)之间以及(b)左侧背侧运动前区(dPM)与右侧M1之间的半球间促进作用(IHF)。以80%和60%的主动运动阈值强度(分别为CP(80%AMT)和CP(60%AMT))向左侧M1或dPM施加条件性TMS脉冲(CP),随后在脑内以3 - 8毫秒和10毫秒的刺激间隔(ISI),通过前后向或后前向(TP(AP)、TP(PA))定向电流在右侧M1上施加测试脉冲(TP)。从左侧第一背侧骨间肌记录肌电图。在主要实验条件下,CP(80%AMT)施加于左侧M1且ISI为6和8毫秒时,通过TP(AP)诱发了IHF。当CP(80%AMT)施加于左侧dPM时,在ISI为8毫秒时产生了IHF,但仅通过TP(PA)。此外,当向M1给予CP(60%AMT)时,在ISI为6毫秒(而非8毫秒)时,随后通过TP(PA)会出现IHF,这表明在dPM上诱发的IHF不是由条件性脉冲向M1的电流扩散引起的。我们得出结论,使用阈下CP对M1和dPM进行条件刺激可差异性地诱发IHF。这些促进性相互作用取决于CP的强度和ISI以及TP的电流流动方向。我们认为,CP不仅激活了不同的解剖学通路,而且这些通路投射到接受刺激的M1中不同的中间神经元群体。这些可能分别对应于参与I3和I1波产生的元件。