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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Use of magnitude-squared coherence to identify the maximum driving response band of the somatosensory evoked potential
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Use of magnitude-squared coherence to identify the maximum driving response band of the somatosensory evoked potential

机译:使用幅度平方的相干性来识别体感诱发电位的最大驱动响应带

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The present study proposes to apply magnitude-squared coherence (MSC) to the somatosensory evoked potential for identifying the maximum driving response band. EEG signals, leads [Fpz'-Cz'] and [C3'-C4'], were collected from two groups of normal volunteers, stimulated at the rate of 4.91 (G1: 26 volunteers) and 5.13 Hz (G2: 18 volunteers). About 1400 stimuli were applied to the right tibial nerve at the motor threshold level. After applying the anti-aliasing filter, the signals were digitized and then further low-pass filtered (200 Hz, 6th order Butterworth and zero-phase). Based on the rejection of the null hypothesis of response absence (MSC(f) > 0.0060 with 500 epochs and the level of significance set at a = 0.05), the beta and gamma bands, 15-66 Hz, were identified as the maximum driving response band. Taking both leads together ("logical-OR detector", with a false-alarm rate of a = 0.05, and hence a = 0.0253 for each derivation), the detection exceeded 70% for all multiples of the stimulation frequency within this range. Similar performance was achieved for MSC of both leads but at 15, 25, 35, and 40 Hz. Moreover, the response was detected in [C3'-C4'] at 35.9 Hz and in [Fpz'-Cz'] at 46.2 Hz for all members of G2. Using the "logical-OR detector" procedure, the response was detected at the 7th multiple of the stimulation frequency for the series as a whole (considering both groups). Based on these findings, the MSC technique may be used for monitoring purposes.
机译:本研究建议将幅度平方相关性(MSC)应用于体感诱发电位,以识别最大驾驶响应带。从两组正常志愿者中收集脑电信号,信号线[Fpz'-Cz']和[C3'-C4'],分别以4.91(G1:26名志愿者)和5.13 Hz(G2:18名志愿者)的频率进行刺激。在运动阈值水平,对右胫神经施加约1400个刺激。应用抗混叠滤波器后,信号将被数字化,然后进一步进行低通滤波(200 Hz,6阶Butterworth和零相位)。基于对响应缺失的零假设(MSC(f)> 0.0060,具有500个历元,显着性水平设置为a = 0.05)的拒绝,确定了15-66 Hz的β和γ频带为最大驱动响应带。将两个引线放在一起(“逻辑或检测器”,错误警报率为a = 0.05,因此对于每个推导,a = 0.0253),对于此范围内所有刺激频率的倍数,检测都超过70%。两根导线的MSC在15、25、35和40 Hz时也获得了相似的性能。此外,对于G2的所有成员,在[C3'-C4']的35.9 Hz和[Fpz'-Cz']的46.2 Hz处检测到响应。使用“逻辑或检测器”过程,在整个系列(包括两组)的刺激频率的第7倍处检测到响应。基于这些发现,MSC技术可用于监视目的。

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