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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Long-range temporal correlations in resting-state alpha oscillations predict human timing-error dynamics
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Long-range temporal correlations in resting-state alpha oscillations predict human timing-error dynamics

机译:静止状态阿尔法振荡中的长期时间相关性预测人类的定时误差动态

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Human behavior is imperfect. This is notably clear during repetitive tasks in which sequences of errors or deviations from perfect performance result. These errors are not random, but show patterned fluctuations with long-range temporal correlations that are well described using power-law spectra P(f)∝1/fβ, where β is the power-law scaling exponent describing the decay in temporal correlations. The neural basis of temporal correlations in such behaviors is not known. Interestingly, long-range temporal correlations are a hallmark of amplitude fluctuations in resting-state neuronal oscillations. Here, we investigated whether the temporal dynamics in brain and behavior are related. Thirty-nine subjects' eyes-open restEEGwas measured. Next, subjects reproduced without feedbacka1sinterval by tapping with their right index finger. In line with previous reports,wefound evidence for the presence of long-range temporal correlations both in the amplitude modulation of resting-state oscillations in multiple frequency bands and in the timing-error sequences. Frequency scaling exponents of finger tapping and amplitude modulation of oscillations exhibited large individual differences. Neuronal dynamics of resting-state alpha-band oscillations (9 -13 Hz) recorded at precentral sites strongly predicted scaling exponents of tapping behavior. The results suggest that individual variation in resting-state brain dynamics offer a neural explanation for individual variation in the error dynamics of human behavior.
机译:人类行为是不完善的。这在重复性任务中特别明显,在重复性任务中会出现一系列错误或与完美性能的偏离。这些误差不是随机的,而是显示出具有长期时间相关性的模式波动,可以使用幂律谱P(f)∝1 /fβ很好地描述这些波动,其中β是描述时间相关性衰减的幂律定标指数。这种行为的时间相关性的神经基础是未知的。有趣的是,远程时间相关性是静止状态神经元振荡中幅度波动的标志。在这里,我们研究了大脑中的暂时动态与行为是否相关。测量了39名受试者的睁眼休息EEG。接下来,通过用右手食指轻敲,无间隔地复制对象。与以前的报道一致,我们发现了在多个频带中的静态振荡的幅度调制中以及在时序误差序列中都存在长期时间相关性的证据。手指敲击的频率缩放指数和振荡的振幅调制表现出较大的个体差异。在中央前部位记录的静止状态α波段振荡(9 -13 Hz)的神经元动力学强烈预测了敲击行为的缩放指数。结果表明,静止状态脑动力学的个体变化为人类行为的误差动力学的个体变化提供了神经学解释。

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