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Interpretations of Frequency Domain Analyses of Neural Entrainment: Periodicity Fundamental Frequency and Harmonics

机译:对神经夹带的频域分析的解释:周期性基本频率和谐波

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摘要

Brain activity can follow the rhythms of dynamic sensory stimuli, such as speech and music, a phenomenon called neural entrainment. It has been hypothesized that low-frequency neural entrainment in the neural delta and theta bands provides a potential mechanism to represent and integrate temporal information. Low-frequency neural entrainment is often studied using periodically changing stimuli and is analyzed in the frequency domain using the Fourier analysis. The Fourier analysis decomposes a periodic signal into harmonically related sinusoids. However, it is not intuitive how these harmonically related components are related to the response waveform. Here, we explain the interpretation of response harmonics, with a special focus on very low-frequency neural entrainment near 1 Hz. It is illustrated why neural responses repeating at f Hz do not necessarily generate any neural response at f Hz in the Fourier spectrum. A strong neural response at f Hz indicates that the time scales of the neural response waveform within each cycle match the time scales of the stimulus rhythm. Therefore, neural entrainment at very low frequency implies not only that the neural response repeats at f Hz but also that each period of the neural response is a slow wave matching the time scale of a f Hz sinusoid.
机译:脑部活动可以遵循动态感官刺激的节奏,例如语音和音乐,这种现象称为神经夹带。已经假设,在神经三角洲和θ带中的低频神经夹带提供了表示和整合时间信息的潜在机制。低频神经夹带通常使用周期性变化的刺激进行研究,并使用傅立叶分析在频域中进行分析。傅里叶分析将周期信号分解为谐波相关的正弦波。但是,这些谐波相关分量与响应波形之间的关系并不直观。在这里,我们解释了响应谐波的解释,特别着重于1 Hz附近的非常低频的神经夹带。说明了为什么在fHz处重复的神经反应不一定在傅立叶谱中在fHz处产生任何神经反应。 f Hz处的强烈神经反应表明,每个周期内神经反应波形的时间尺度与刺激心律的时间尺度匹配。因此,非常低频率的神经夹带不仅意味着神经响应以f Hz重复,而且意味着神经响应的每个周期都是与f Hz正弦曲线的时间尺度匹配的慢波。

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