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The effects of conditioning startling acoustic stimulation (SAS) on the corticospinal motor system: a SAS-TMS study

机译:调节令人惊讶的声学刺激(SAS)对皮质电机系统的影响:SAS-TMS研究

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A startling acoustic stimulus (SAS) could cause transient effects on the primary motor cortex and its descending tracts after habituation of reflex responses. In the literature, there is evidence that the effects of SAS depend on the status of M1 excitability and delivery time of SAS. In this study, we aimed to comprehensively investigate the effects of SAS on the excitability of primary motor cortex. Eleven healthy subjects participated in this study. Transcranial magnetic stimulation (TMS) was delivered to the hot spot for left biceps at rest and during isometric right elbow flexion (10, 30, and 60% of their maximum voluntary contraction, MVC). There were three SAS conditions: (1) No SAS; (2) SAS was delivered 50ms prior to TMS (SAS50); (3) SAS 90ms prior to TMS (SAS90). For each subject, the induced MEP amplitude was normalized to the largest response at rest with No SAS. Two-way ANOVAs (4 force levelsx3 SAS conditions) with repeated measures were used to determine the differences under different conditions. For the MEP amplitude, there were significant force level effect and FORCE LEVEL x SAS interactions. Specifically, the MEP amplitude increased with force level. Furthermore, post hoc analysis showed that the MEP amplitude reduced during SAS50 and SAS90 compared to No SAS only at rest. Our results provide evidence that a conditioning SAS causes a transient suppression of the corticospinal excitability at rest when it is delivered 50ms and 90ms prior to TMS. However, a conditioning SAS has no effect when the corticospinal excitability is already elevated with an external visual target.
机译:在反射反应的习惯后,令人惊叹的声学刺激(SAS)可能对初级电机皮层及其下降的辐射产生瞬态影响。在文献中,有证据表明SAS的影响取决于M1兴奋性和SAS的递送时间的状态。在这项研究中,我们旨在全面调查SA对初级运动皮层兴奋性的影响。 11个健康科目参加了这项研究。经颅磁刺激(TMS)被送到休息和右肘弯曲(10,30和60%的最大自愿收缩,MVC)期间剩余的二头肌的热点。有三个SAS条件:(1)没有SAS; (2)SAS在TMS之前提供50ms(SAS50); (3)TMS之前的SAS 90ms(SAS90)。对于每个受试者,诱导的MEP幅度被标准化为休息的最大响应,没有SAS。双向ANOVAS(4强水平X3 SAS条件)用于重复措施来确定不同条件下的差异。对于MEP幅度,有显着的力水平效应和力水平X SAS相互作用。具体地,MEP幅度随力水平增加。此外,HOC分析表明,在SAS50和SAS90期间减少了MEP幅度,而不是在休息时的SAS。我们的结果提供了证据表明,当在TMS之前递送50ms和90ms时,调节SAS在静止时导致瞬变抑制。然而,当具有外部视觉目标的皮质脊柱兴奋性已经升高时,调节SA没有效果。

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