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首页> 外文期刊>NeuroImage >Conditioning transcutaneous electrical nerve stimulation induces delayed gating effects on cortical response: a magnetoencephalographic study.
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Conditioning transcutaneous electrical nerve stimulation induces delayed gating effects on cortical response: a magnetoencephalographic study.

机译:调节性经皮电神经刺激可诱发门控对皮层反应的延迟作用:一项磁脑图研究。

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摘要

The present study was undertaken to investigate after-effects of 7 Hz non-painful prolonged stimulation of the median nerve on somatosensory-evoked fields (SEFs). The working hypothesis that conditioning peripheral stimulations might produce delayed interfering ("gating") effects on the response of somatosensory cortex to test stimuli was evaluated. In the control condition, electrical thumb stimulation induced SEFs in ten subjects. In the experimental protocol, a conditioning median nerve stimulation at wrist preceded 6 electrical thumb stimulations. Equivalent current dipoles fitting SEFs modeled responses of contralateral primary area (SI) and bilateral secondary somatosensory areas (SII) following control and experimental conditions. Compared to the control condition, conditioning stimulation induced no amplitude modulation of SI response at the initial stimulus-related peak (20 ms). In contrast, later response from SI (35 ms) and response from SII were significantly weakened in amplitude. Gradual but fast recovery towards control amplitude levels was observed for the response from SI-P35, while a slightly slower cycle was featured from SII. These findings point to a delayed "gating" effect on the synchronization of somatosensory cortex after peripheral conditioning stimulations. This effect was found to be more lasting in SII area, as a possible reflection of its integrative role in sensory processing.
机译:进行本研究以研究7 Hz无痛长时间正中神经对体感诱发场(SEFs)的后效应。评估了调节周围刺激可能对体感皮层对测试刺激的反应产生延迟干扰(“门控”)作用的假设。在对照条件下,拇指电刺激可诱发十名受试者的SEF。在实验方案中,在腕部进行6次电拇指刺激之前先进行腕部正中神经刺激。拟合SEF的等效电流偶极子在控制和实验条件下模拟了对侧主要区域(SI)和双侧次要体感区域(SII)的响应。与对照条件相比,条件刺激在初始刺激相关峰(20 ms)处未引起SI响应的幅度调制。相反,来自SI的后期响应(35毫秒)和来自SII的响应在幅度上明显减弱。对于SI-P35的响应,已观察到逐渐但快速恢复到控制幅度水平,而SII的响应周期稍慢。这些发现表明在外围条件刺激之后,对体感皮层同步的延迟的“门控”效应。发现该作用在SII区域更持久,这可能是其在感觉处理中的整合作用的反映。

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