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Electroencephalographic frontal synchrony and caudal asynchrony during painful hand immersion in cold water

机译:在冷水中疼痛的手浸在疼痛手中的脑电图额相同步和尾部异步

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Recent studies in our laboratory showed that cortical theta oscillations correlate with pain in rodent models. In this study, we sought to validate our pre-clinical data using EEG recordings in humans during immersion of the hand in ice cold water, a moderately noxious stimulus. Power spectral analysis shows that an increase in pain score is associated with an increase in power amplitude within a frequency range of 6-7 Hz at the frontal (Fz) electrode. These results are consistent with our previous pre-clinical animal studies and the clinical literature. We also report a novel reduction in power at the caudal (O1) electrode within a broader 3-30 Hz rand and decreased coherence between Fz and C3, C4 electrodes within the theta (4-8 Hz) and low beta (13-21 Hz) bands, while coherence (an indirect measure of functional connectivity) between Fz and O1 increased within the theta and alpha (8-12 Hz) bands. We argue that pain is associated with EEG frontal synchrony and caudal asynchrony, leading to the disruption of cortico-cortical connectivity. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们实验室最近的研究表明皮质θ振荡与啮齿动物模型的疼痛相关。在这项研究中,我们试图在浸入冰冷的水中浸入冰冷的水中,使用人类的脑电图录音来验证我们的前临床数据。功率谱分析表明,疼痛评分的增加与前部(FZ)电极的6-7 Hz的频率范围内的功率幅度的增加相关。这些结果与我们以前的临床前动物研究和临床文献一致。我们还报告了在更广泛的3-30Hz兰特内的尾部(O1)电极的电力降低,并且在θ(4-8Hz)和低β内的FZ和C3,C4电极之间的相干性降低(13-21Hz )频带,而FZ和O1之间的相干性(功能连接的间接测量)在θ和α(8-12 Hz)条带内增加。我们认为,痛苦与脑电图的骨骼同步和尾部异步相关,导致皮质皮质连接的破坏。 (c)2016年Elsevier Inc.保留所有权利。

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