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Analysis of stimulus-related activity in rat auditory cortex using complex spectral coefficients

机译:使用复杂频谱系数分析大鼠听觉皮层中与刺激相关的活动

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摘要

The neural mechanisms of sensory responses recorded from the scalp or cortical surface remain controversial. Evoked vs. induced response components (i.e., changes in mean vs. variance) are associated with bottom-up vs. top-down processing, but trial-by-trial response variability can confound this interpretation. Phase reset of ongoing oscillations has also been postulated to contribute to sensory responses. In this article, we present evidence that responses under passive listening conditions are dominated by variable evoked response components. We measured the mean, variance, and phase of complex time-frequency coefficients of epidurally recorded responses to acoustic stimuli in rats. During the stimulus, changes in mean, variance, and phase tended to co-occur. After the stimulus, there was a small, low-frequency offset response in the mean and modest, prolonged desynchronization in the alpha band. Simulations showed that trial-by-trial variability in the mean can account for most of the variance and phase changes observed during the stimulus. This variability was state dependent, with smallest variability during periods of greatest arousal. Our data suggest that cortical responses to auditory stimuli reflect variable inputs to the cortical network. These analyses suggest that caution should be exercised when interpreting variance and phase changes in terms of top-down cortical processing.
机译:从头皮或皮层表面记录的感觉反应的神经机制仍存在争议。诱发的诱发因素与诱发的反应成分(即均值与方差的变化)与自下而上与自上而下的处理相关,但是逐次试验的反应变异性可能会混淆这种解释。还假定正在进行的振荡的相位重置有助于感觉反应。在本文中,我们提供了证据,表明在被动聆听条件下的响应受可变诱发响应组件的控制。我们测量了硬膜外记录的大鼠对声刺激的响应的复杂时频系数的均值,方差和相位。在刺激过程中,均值,方差和相位都倾向于同时发生变化。刺激之后,在阿尔法频段中,平均的,适度的,长时间的失步有一个小的低频偏移响应。模拟表明,均值的逐次变化可以解释刺激过程中观察到的大多数变化和相位变化。这种可变性取决于状态,在最大唤醒期间具有最小的可变性。我们的数据表明,皮质对听觉刺激的反应反映了皮质网络的可变输入。这些分析表明,在解释自上而下的皮层处理的方差和相位变化时应谨慎行事。

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