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姿势短暂扰动的反应:肌电图、中线皮质和皮质下变化。

Responses to brief perturbations of stance: EMG, midline cortical, and subcortical changes.

机构信息

Neuroscience Research Australia, University of New South Wales, Sydney, New South Wales, Australia.

MARCS Institute for Brain, Behaviour and Development, Western Sydney University, Sydney, New South Wales, Australia.

出版信息

J Neurophysiol. 2024 Sep 1;132(3):1014-1024. doi: 10.1152/jn.00252.2024. Epub 2024 Aug 14.

DOI:10.1152/jn.00252.2024
PMID:39140589
Abstract

We studied simultaneous EMG and midline EEG responses, including over the cerebellum, in 10 standing subjects (35 ± 15 yr; 5 females, 5 males). Recordings were made following repeated taps to the sternum, stimuli known to evoke short-latency EMG responses in leg muscles, consistent with postural reflexes. EEG power had relatively more high-frequency components (>30 Hz) when recorded from electrodes over the cerebellum (Iz and SIz) compared with other midline electrodes. We confirmed a previous report using a similar stimulus that evoked short-latency potentials over the cerebellum. We showed clear midline-evoked EEG potentials occurring at short latency over the cerebellum (P23, N31, N42, and P54) and frontally (N28 and N57) before the previously described perturbation-evoked potential (P1/N1/P2). The P23 response correlated with the subsequent EMG response in the tibialis anterior muscles (r = 0.72, = 0.018), confirming and extending previous observations. We did not find a correlation with the N1 amplitude. We conclude that early activity occurs from electrodes over the inion in response to a brief tap to the sternum. This is likely to represent cerebellar activity and it appears to modulate short-latency postural EMG responses. We studied the effects of a brief tap to the sternum in human subjects, known to evoke short-latency postural responses. Using an extended EEG recording system, we showed early evoked responses over the midline cerebellum, including the P23 potential, which correlated with the EMG responses in tibialis anterior, consistent with a cerebellar role in postural reflexes. The stimulus also evoked later EEG responses, including the perturbation potential.

摘要

我们研究了 10 名站立受试者(35±15 岁;5 名女性,5 名男性)的同时肌电图和中线脑电图反应,包括小脑上的反应。记录是在胸骨反复敲击后进行的,这种刺激已知会在腿部肌肉中引起潜伏期短的肌电图反应,与姿势反射一致。与其他中线电极相比,记录在小脑上的电极(Iz 和 SIz)的脑电图功率具有相对更多的高频成分(>30 Hz)。我们通过使用类似的刺激来证实之前的报告,该刺激会在小脑上引起潜伏期短的电位。我们在小脑(P23、N31、N42 和 P54)和额部(N28 和 N57)上显示了明确的中线诱发脑电图电位,潜伏期短,然后是之前描述的扰动诱发电位(P1/N1/P2)。P23 反应与胫骨前肌的随后肌电图反应相关(r = 0.72, = 0.018),证实并扩展了以前的观察结果。我们没有发现与 N1 幅度的相关性。我们得出结论,在胸骨短暂敲击后,从中线电极上的骨结节会产生早期活动。这可能代表小脑活动,并且似乎调节潜伏期短的姿势肌电图反应。我们研究了胸骨短暂敲击对人类受试者的影响,已知会引起潜伏期短的姿势反应。使用扩展的脑电图记录系统,我们显示了中线小脑上的早期诱发反应,包括 P23 电位,与胫骨前肌的肌电图反应相关,与小脑在姿势反射中的作用一致。刺激还引起了后来的脑电图反应,包括扰动电位。

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