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首页> 外文期刊>Brain topography >Brain dynamics of scalp evoked potentials and current source densities to repetitive (5-pulse train) painful stimulation of skin and muscle: central correlate of temporal summation.
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Brain dynamics of scalp evoked potentials and current source densities to repetitive (5-pulse train) painful stimulation of skin and muscle: central correlate of temporal summation.

机译:头皮的脑动力学诱发电位和电流源密度,以重复(5脉冲序列)的方式刺激皮肤和肌肉疼痛:时间总和的中心相关性。

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Temporal summation is a potent central somatosensory mechanism and may be a major mechanism involved in e.g. neuropathic pain. This study assessed the long-latency somatosensory evoked potentials (SEPs) in response to trains of repeated painful electrical stimulation of human skin and muscle in order to investigate the cerebral representation of temporal summation. Forty series of stimuli were delivered at stimulus intensities corresponding to moderate pain levels in 20 young men. Each series consisted of a five-burst-pulses (1 ms) train delivered at 2 Hz, known to activate temporal summation, i.e. increased pain intensity during the series of stimuli. Grand mean averaged waveforms (31 ch. EEG) were obtained in response to the skin and muscle stimulation. In the "train" SEPs, the wave morphology was characterized by four peak components after the first stimulus (100 to 450 ms) and by three components after the fifth stimulus (2100-2145 ms). The latency was significantly prolonged for muscle stimulation only. The 3D topographic maps at the peak activation time (100, 140, 250, and 450 ms) showed clear reduction in the amplitudes and their spatial extent (P4/P100-Fc2/N100, POz/P140-Fc2/N140, Cz/P250, Cz/N460) betweenthe first and the fifth stimulus. The current source density (CSD) topology exhibited markedly differential patterns changing from the first to the fifth stimulus. For the skin stimulation, the fifth stimulus was associated with a distinct emergence of the frontal negativity source at Fc2 right frontal cortex. This was consistent across the 100,140, 250, and 450 peak components but was not even visible in the first stimulus. In the muscle, the fifth stimulus was associated with a marked reduction of the frontal positivity at contralateral F4 site in the early stages at 100 and 140 ms, and with a total disappearance of positive source at Cz. In summary, this study demonstrated a clear temporal summation of psychophysical ratings, reduction of the peak amplitudes in the last of the first stimuli, dissociation from simple amplitude increase of the cerebral responses to pain, and a concurrent transformation of the CSD patterns. This change in "rapid cortical dynamics" of short-term plasticity could be an important mechanism for wind-up and pain processing in the brain.
机译:时间总和是一种有效的中央体感机制,并且可能是例如与之相关的主要机制。神经性疼痛。这项研究评估了对人类皮肤和肌肉的反复疼痛性电刺激的反应,长潜伏期的体感诱发电位(SEPs),以研究时间总和的大脑表征。在20位年轻男性中,以对应于中等疼痛水平的刺激强度传递了40个系列的刺激。每个系列包括以2 Hz的频率传递的五次脉冲(1 ms)序列,已知该序列可激活时间求和,即在一系列刺激过程中增加疼痛强度。响应于皮肤和肌肉刺激,获得了平均平均波形(31 ch。EEG)。在“火车” SEP中,波形态的特征在于第一次刺激后(100至450毫秒)的四个峰值分量和第五次刺激后(2100-2145毫秒)的三个峰值分量。仅对于肌肉刺激,潜伏期显着延长。峰值激活时间(100、140、250和450 ms)的3D地形图显示振幅及其空间范围(P4 / P100-Fc2 / N100,POz / P140-Fc2 / N140,Cz / P250)明显减小,Cz / N460)。电流源密度(CSD)拓扑显示出明显的差异模式,从第一刺激变化到第五刺激。对于皮肤刺激,第五刺激与Fc2右额皮质的额叶阴性源的明显出现有关。在100,140、250和450个峰值分量上这是一致的,但在第一个刺激中甚至看不到。在肌肉中,第五个刺激与早期100和140 ms的对侧F4部位的额叶正面阳性显着降低有关,并且与Cz上阳性源完全消失有关。总而言之,这项研究证明了心理物理评分的清晰时间总和,第一次刺激的最后一个刺激的峰值幅度降低,与大脑对疼痛的简单幅度增加解离以及CSD模式的同时转变。短期可塑性的“快速皮层动力学”的这种变化可能是大脑发炎和疼痛处理的重要机制。

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