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Demonstration of facilitatory I wave interaction in the human motor cortex by paired transcranial magnetic stimulation

机译:通过配对的经颅磁刺激证明人类运动皮层中的促进性I波相互作用

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class="enumerated" style="list-style-type:decimal">Transcranial magnetic stimulation (TMS) of the human motor cortex results in multiple discharges (D and I waves) in the corticospinal tract. We tested whether these volleys can be explored non-invasively with paired TMS. The intensity of the first stimulus (S1) was set to produce a motor-evoked potential (MEP) of 1 mV in the resting contralateral abductor digiti minimi (ADM) muscle; the second stimulus (S2) was set to 90 % of the resting motor threshold. At interstimulus intervals of 1·1-1·5, 2·3-2·9 and 4·1-4·4 ms the MEP elicited by S1 plus S2 was larger than that produced by S1 alone.Varying the S1 intensity between 70 and 130 % resting motor threshold with S2 held constant at 90 % resting motor threshold showed that the threshold for the first MEP peak was <= 70 % resting motor threshold. The second and third MEP peaks appeared only at higher S1 intensities. The latency of all peaks decreased with increasing S1 intensity.Varying the S2 intensity with S1 held constant to produce a MEP of 1 mV on its own showed that the amplitude of all MEP peaks increased with S2 intensity, but that their timing remained unchanged.Paired TMS in the active ADM (S1 clearly suprathreshold, S2 just above threshold; interstimulus interval, 1 ms) produced strong MEP facilitation. The onset of this facilitation occurred later by about 1·5 ms than the onset of the MEP evoked by S2 alone. No MEP facilitation was seen if the magnetic S2 was replaced by anodal or cathodal transcranial electrical stimulation.It is concluded that the MEP facilitation after paired TMS, at least for the first MEP peak, is due to facilitatory interaction between I waves, and takes place in the motor cortex at or upstream from the corticospinal neurone.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 人类运动皮层的经颅磁刺激(TMS)在皮质脊髓束中产生多次放电(D波和I波)。我们测试了是否可以使用成对的TMS非侵入性地探查这些齐射。设置第一个刺激的强度(S1),以使静止的对侧外展指外肌(ADM)肌肉产生1 mV的运动诱发电位(MEP);第二个刺激(S2)设置为静止运动阈值的90%。刺激间隔为1·1-1·5、2·3-2·9和4·1-4·4 ms,S1和S2引起的MEP大于单独S1产生的MEP。
  • 将S1强度在70%和130%静止电机阈值之间变化,同时将S2保持在90%静止电机阈值不变,这表明第一个MEP峰值的阈值<= 70%静止电机阈值。第二个和第三个MEP峰仅在较高的S1强度下出现。随着S1强度的增加,所有峰的潜伏期缩短。 在S1保持不变的情况下改变S2强度,以自行产生1 mV的MEP表明,所有MEP峰的振幅均随S2强度的增加而增加,但 活动ADM中的TMS配对(S1明显高于阈值,S2刚好高于阈值;刺激间隔1 ms)对MEP有很强的促进作用。这种促进的发生比仅由S2引起的MEP的发生晚约1·5ms。如果通过阳极或阴极经颅电刺激代替磁性S2,则未见MEP促进作用。 结论是,配对TMS后,至少对于第一个MEP峰,MEP促进作用是由于促进相互作用发生在I波之间,发生在皮质脊髓神经元或其上游的运动皮层中。
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