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Lasting depression in corticomotor excitability associated with local scalp cooling

机译:与局部头皮冷却相关的皮质体激发性持久抑郁症

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摘要

In this study, we investigated the effect of local scalp cooling on corticomotor excitability with transcranial magnetic simulation (TMS). Participants (healthy male adults, n = 12) were first assessed with TMS to derive baseline measure of excitability from motor evoked potentials (MEPs) using the right first dorsal interosseous as the target muscle. Then, local cooling was induced on the right hemi-scalp (upper frontal region ~15 cm2) by means of a cold wrap. The cooling was maintained for 10-15 min to get a decrease of at least 10 °C from baseline temperature. In the post-cooling period, both scalp temperature and MEPs were reassessed at specific time intervals (i.e., TO, T10, T20 and T30min). Scalp surface temperatures dropped on average by 12.5 °C from baseline at TO (p < 0.001) with partial recovery at T10 (p < 0.05) and full recovery at T20. Parallel analysis of post-cooling variations in MEP amplitude revealed significant reductions relative to baseline at TO, T10 and T20. No concurrent change in MEP latency was observed. A secondary control experiment was performed in a subset of participants (n = 5) to account for the mild discomfort associated with the wrapping procedure without the cooling agent. Results showed no effect on any of the dependent variables (temperature, MEP amplitude and latency). To our knowledge, this report provides the first neurophysiological evidence linking changes in scalp temperature with lasting changes in corticomotor excitability.
机译:在这项研究中,我们研究了局部头皮冷却对具有经颅磁模拟(TMS)的皮质感引发性的影响。首先用TMS评估参与者(健康的男性成年人,N = 12),以通过使用正确的第一背孔作为目标肌肉来评估来自电动机诱发电位(MEP)的基线测量兴奋性。然后,通过冷膜诱导局部冷却在右侧半头(上部区域〜15cm 2)上诱导。将冷却保持10-15分钟,以从基线温度降低至少10℃。在后冷热时间内,以特定时间间隔(即,T10,T20和T30min)重新评估头皮温度和MEP。头皮表面温度平均下降12.5°C,从基线(p <0.001),在t10的部分恢复(p <0.05)并在t20完全恢复。对MEP幅度的冷却后变化的并行分析显示相对于T10和T20的基线的显着降低。没有观察到MEP延迟的并发变化。在参与者(n = 5)的子集中进行二次控制实验,以考虑与没有冷却剂的包裹程序相关的轻度不适。结果对任何从属变量(温度,MEP幅度和延迟)没有影响。据我们所知,本报告提供了第一次与皮质动脉兴奋性的持久变化相关的神经生理证据。

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