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Direct demonstration of the effects of repetitive paired-pulse transcranial magnetic stimulation at I-wave periodicity.

机译:在I波周期性下直接演示重复成对脉冲经颅磁刺激的效果。

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摘要

OBJECTIVE: To investigate the central nervous system level at which paired-pulse repetitive transcranial magnetic stimulation at I-wave periodicity (iTMS) produces a facilitation of motor evoked potential (MEP) amplitude. METHODS: In one conscious patient who had an electrode implanted in the cervical epidural space for the control of pain, we recorded corticospinal volleys evoked before, during and after iTMS of the motor cortex. Moreover, we compared MEPs to TMS and cervico-medullary junction stimulation before and after iTMS in a separate group of five healthy subjects. RESULTS: In the patient with the epidural electrode, during iTMS there was progressive increase of MEP amplitude, and by the end of the intervention period MEP increased by more than 300%. The pronounced increase in MEP amplitude was paralleled by a slight increase in the amplitude of epidural volleys. An increased MEP amplitude (more than 200%) was still evident 3 min after the end of iTMS. In the five healthy subjects, iTMS produced a facilitation of MEPs evoked by transcranial magnetic stimulation but had no effect on CMEPs evoked by cervico-medullary junction stimulation. CONCLUSIONS: The results indicate that iTMS leads to an increase in corticomotor excitability at a supraspinal level, and that this may include circuits in addition to those involved in I-wave generation. SIGNIFICANCE: iTMS increases cortical excitability more widely than the I-wave networks that it targets.
机译:目的:研究中枢神经系统水平,在该水平下,成对脉冲重复经颅磁刺激以I波周期(iTMS)产生,可促进运动诱发电位(MEP)振幅。方法:在一位意识清楚的患者中,该患者在颈硬膜外腔内植入了电极以控制疼痛,我们记录了运动皮层iTMS之前,期间和之后诱发的皮质脊髓截击。此外,我们在五个健康受试者的独立组中比较了iTMS之前和之后的MEP与TMS和颈髓连接刺激。结果:在硬膜外电极患者中,iTMS期间MEP幅度逐渐增加,并且在干预期结束时MEP增加了300%以上。 MEP幅度的明显增加与硬膜外截击幅度的轻微增加相平行。 iTMS结束后3分钟,MEP振幅仍增加(超过200%)。在这五名健康受试者中,iTMS促进了经颅磁刺激诱发的MEP,但对子宫颈-髓质交界处刺激诱发的CMEP没有影响。结论:结果表明,iTMS导致在脊髓上水平的皮质运动兴奋性增加,这可能包括除参与I波产生的电路以外的其他电路。意义:iTMS比其靶向的I波网络更广泛地增加了皮层兴奋性。

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