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Multiple Coherence vs Multiple Component Synchrony Measure for somatosensory evoked response detection

机译:体感诱发反应检测的多相干与多分量同步测量

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摘要

This work aims at comparing the performance of two Multivariate Objective Response Detection (MORD) techniques in the frequency domain, the Multiple Coherence (MC) and the Multiple Component Synchrony Measure (MCSM), for tibial nerve somatosensory evoked potential (SEP) detection. Electroencephalographic (EEG) signals during somatosensory stimulation were collected from forty adult volunteers using the 10–20 International System. The stimulation was carried out throughout current pulses (200 µs width) applied to the right posterior tibial nerve (motor threshold intensity level) at the rate of 5 Hz. The response detection was based on rejecting the null hypothesis of response absence (M = 100 and M = 800 epochs and significance level α = 0.05). The MORD techniques were applied to the pairs of derivations [Cz][Fz] and [C3][C4]. The MC outperforms the MCSM, regardless the pair of derivations or the number of epochs used for the estimates calculation. Hence, the MC should be used, if two derivations are available for SEP recording.
机译:这项工作旨在比较两种多元目标响应检测(MORD)技术在频域中的性能,即多相干性(MC)和多分量同步测量(MCSM),用于检测胫骨神经体感诱发电位(SEP)。使用10-20国际系统从40名成年志愿者那里收集了体感刺激期间的脑电图(EEG)信号。在施加于右胫后神经的整个电流脉冲(宽度为200 µs)(运动阈值强度水平)上以5 Hz的频率进行刺激。响应检测基于否定响应缺失的原假设(M = 100和M = 800历元,显着性水平α= 0.05)。 MORD技术应用于衍生对[Cz] [Fz]和[C3] [C4]。无论估算对使用的是一对派生还是多个时期,MC的性能都优于MCSM。因此,如果两个派生可用于SEP记录,则应使用MC。

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