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The Bivariate Global Spectral Beta Test: A New Objective Response Detector Applied to the EEG During Photic Stimulation

机译:双变量全局光谱β试验:在光刺激期间施加到脑电图的新客观响应探测器

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摘要

The objective response detection (ORD) techniques such as Global Spectral F-Test (GSFT) are mathematical methods used to detect potentials evoked to rhythmic stimulation that are embedded in the ongoing electroencephalogram (EEG). The ORDs are based on the detector sampling distribution under the null hypothesis of no response to assess whether a given response is embedded in the electroencephalogram background (EEG). The performance of these detectors is strongly affected on both the signal-to-noise ratio (SNR) and the length of the electroencephalogram (EEG) signal. In this context, multivariate detectors are developed to increase the performance of the detection technique without increasing data recording time by using the information from more signals simultaneously. This work proposes three new bivariate detectors based on the normalization of the Global Spectral F-Test. The critical values and detection probabilities for the new techniques were obtained theoretically and using a Monte Carlo simulation. The bivariate new detectors were next applied to the EEG from 10 subjects during intermittent, photic stimulation leading to an increase of up to 32.69% in mean detection rate in comparison with the univariate Global Spectral Beta-Test. The higher detection rate obtained with the proposed techniques without the need of increasing the number of data segments allows evoked responses to be detected faster, which might be useful in clinical practice.
机译:客观响应检测(ORD)技术,诸如全球谱F-测试(GSFT)是用于检测诱发到嵌入在正在进行的脑电图(EEG)节奏的刺激潜力的数学方法。的ORDS基于无响应的零假设下的检测器采样分布来评估给定的响应是否嵌入在脑波背景(EEG)。这些检测器的性能的强烈影响同时在信噪比(SNR)和脑电图(EEG)信号的长度。在这种情况下,多变量检测器的开发,以提高检测技术的性能,而不通过使用从同时多个信号的信息增加的数据记录时间。这项工作提出了基于全球谱F-测试正常化三个新的二元探测器。进行了理论获得和使用蒙特卡罗模拟为新技术的临界值和检测概率。二元新探测器被从下一个10名受试者间歇期间施加到EEG,光刺激导致与单变量全球谱beta测试比较增幅高达32.69%平均检出率。而不需要增加的数据段的数目的与所提出的技术得到的更高的检测率允许诱发被更快检测到的响应,这可能是在临床实践中是有用的。

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