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Steady-State BOLD Response Modulates Low Frequency Neural Oscillations

机译:稳态大胆响应调制低频神经振荡

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摘要

Neural oscillations are the intrinsic characteristics of brain activities. Traditional electrophysiological techniques (e.g., the steady-state evoked potential, SSEP) have provided important insights into the mechanisms of neural oscillations in the high frequency ranges (>1 Hz). However, the neural oscillations within the low frequency ranges (<1 Hz) and deep brain areas are rarely examined. Based on the advantages of the low frequency blood oxygen level dependent (BOLD) fluctuations, we expected that the steady-state BOLD responses (SSBRs) would be elicited and modulate low frequency neural oscillations. Twenty six participants completed a simple reaction time task with the constant stimuli frequencies of 0.0625 Hz and 0.125 Hz. Power analysis and hemodynamic response function deconvolution method were used to extract SSBRs and recover neural level signals. The SSEP-like waveforms were observed at the whole brain level and at several task-related brain regions. Specifically, the harmonic phenomenon of SSBR was task-related and independent of the neurovascular coupling. These findings suggested that the SSBRs represent non-linear neural oscillations but not brain activations. In comparison with the conventional general linear model, the SSBRs provide us novel insights into the non-linear brain activities, low frequency neural oscillations, and neuroplasticity of brain training and cognitive activities.
机译:神经振荡是大脑活动的固有特征。传统的电生理技术(例如稳态诱发电位SSEP)为深入了解高频范围(> 1 Hz)中的神经振荡机制提供了重要见识。但是,很少检查低频范围(<1 Hz)和深脑区域内的神经振荡。基于低频血氧水平依赖性(BOLD)波动的优势,我们期望稳态BOLD响应(SSBR)会被激发并调节低频神经振荡。 26名参与者完成了一个简单的反应时间任务,其恒定刺激频率为0.0625 Hz和0.125 Hz。使用功率分析和血液动力学响应函数反卷积方法提取SSBR并恢复神经水平信号。在全脑水平和几个与任务相关的大脑区域都观察到了类似SSEP的波形。具体而言,SSBR的谐波现象与任务有关,并且与神经血管耦合无关。这些发现表明,SSBR代表非线性神经振荡,而不是大脑激活。与常规的一般线性模型相比,SSBRs为我们提供了关于非线性大脑活动,低频神经振荡以及大脑训练和认知活动的神经可塑性的新颖见解。

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