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脑电图动力学的空间均匀和非均匀分析及其在α节律地形图中的应用。

Spatially uniform and nonuniform analyses of electroencephalographic dynamics,with application to the topography of the alpha rhythm.

作者信息

O'Connor S C, Robinson P A

机构信息

School of Physics, University of Sydney, Sydney, New South Wales 2006, Australia.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Jul;70(1 Pt 1):011911. doi: 10.1103/PhysRevE.70.011911. Epub 2004 Jul 21.

Abstract

Corticothalamic dynamics are investigated using a model in which spatial nonuniformities are incorporated via the coupling of spatial eigenmodes. Comparison of spectra generated using the nonuniform analysis with those generated using a uniform one demonstrates that, for most frequencies, local activity is only weakly dependent on activity elsewhere in the cortex; however, dispersion of low-wave-number activity ensures that distant dynamics influence local dynamics at low frequencies (below approximately 2 Hz ), and at the alpha frequency (approximately 10 Hz ), where propagating signals are inherently weakly damped, and wavelengths are large. When certain model parameters have similar spatial profiles, as is expected from physiology, the low-frequency discrepancies tend to cancel, and the uniform analysis with local parameter values is an adequate approximation to the full nonuniform one across the whole spectrum, at least for large-scale nonuniformities. After comparing the uniform and nonuniform analyses, we consider one possible application of the nonuniform analysis: studying the phenomenon of occipital alpha dominance, whereby the alpha frequency and power are greater at the back of the head (occipitally) than at the front. In order to infer realistic nonuniformities in the model parameters, the uniform version of the model is first fitted to data recorded from 98 normal subjects in a waking, eyes-closed state. This yields a set of parameters at each of five electrode sites along the midline. The inferred parameter nonuniformities are consistent with anatomical and physiological constraints. Introducing these spatial profiles into the full nonuniform model then quantitatively reproduces observed site-dependent variations in the alpha power and frequency. The results confirm that the frequency shift is mainly due to a decrease in the corticothalamic propagation delay, but indicate that the delay nonuniformity cannot account for the observed occipital increase in alpha power; the occipital alpha dominance is due to decreased cortical gains and increased thalamic gains in occipital regions compared to frontal ones.

摘要

利用一个通过空间本征模耦合纳入空间不均匀性的模型来研究皮质丘脑动力学。将使用非均匀分析生成的频谱与使用均匀分析生成的频谱进行比较表明,对于大多数频率,局部活动仅微弱地依赖于皮质其他部位的活动;然而,低波数活动的色散确保了远距离动力学在低频(低于约2Hz)以及在α频率(约10Hz)时影响局部动力学,在这些频率下传播信号固有地弱阻尼且波长较大。当某些模型参数具有相似的空间分布时,正如生理学所预期的那样,低频差异往往会相互抵消,并且使用局部参数值的均匀分析在整个频谱上是对完整非均匀分析的充分近似,至少对于大规模不均匀性是如此。在比较了均匀分析和非均匀分析之后,我们考虑非均匀分析的一种可能应用:研究枕叶α优势现象,即头部后部(枕叶)的α频率和功率比前部更大。为了推断模型参数中实际的不均匀性,首先将模型的均匀版本拟合到98名正常受试者在清醒、闭眼状态下记录的数据。这在沿中线的五个电极部位中的每个部位产生了一组参数。推断出的参数不均匀性与解剖学和生理学约束一致。然后将这些空间分布引入完整的非均匀模型中,定量地再现了观察到的α功率和频率的部位依赖性变化。结果证实频率偏移主要是由于皮质丘脑传播延迟的减少,但表明延迟不均匀性不能解释观察到的枕叶α功率增加;枕叶α优势是由于与额叶区域相比,枕叶区域的皮质增益降低和丘脑增益增加。

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