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Recurrence network analysis of multiple local field potential bands from the orofacial portion of primary motor cortex.

机译:初级电机皮质初级孔隙多个局部场势带的再次复发网络分析。

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Local field potentials (LFPs), which have been considered as aggregate signals that reflect activities of a large number of neurons in the cerebral cortex, have been observed to mediate gross functional activities of a relatively small volume of the brain tissues. Historically there have been several frequency bands observed and defined across various brain areas. However, detailed analysis, either spectral analysis or any dynamical analysis of LFPs particularly in the orofacial part of the primary motor cortex (MIo) has not been done before. Here, we recorded LFPs from MIo using an electrode array from a non-human primate during feeding behavior. Then we performed spectral analysis during the whole feeding sequences and to characterize temporal evolution of spectrum around the time of swallow cycles. The spectrogram over the β range showed dynamical change in its power around the swallow cycle onsets. We then characterized dynamical behaviors of LFPs over multiple bands, α, β, low γ, and high γ using two measures from the recurrence network (RN) method, network transitivity, T and average path length L. Temporal profile of T in a and β indicated that there was a sudden change in the dynamical properties around the swallow cycle onsets, while temporal profile of L indicated that a range of --200 to -150 ms and 200ms to the swallow cycle onsets exhibited large changes both in a and β ranges. Therefore, to further understand the involvement of cortical oscillation to behavior, particularly swallowing, the combination of traditional spectral methods and various dynamical methods such as RN method would be essential.
机译:已被认为是反映大量神经元在脑皮质中的聚集信号的局部局部电位(LFP)已经观察到已经观察到脑皮质中的大量神经元的活动,以介导相对较少体积的脑组织的总功能性活性。历史上,已经观察到各种脑区的几个频段和定义。然而,详细分析,特别是LFP的光谱分析或任何动态分析,特别是在初级电机皮质(MIO)的orofial部分中尚未完成。在这里,我们在饲养行为期间使用来自非人灵长类动物的电极阵列从MIO记录了LFP。然后我们在整个馈电序列期间进行光谱分析,并在吞咽循环时表征频谱的时间演变。 β范围内的频谱图显示出围绕吞咽循环垂直的动力的动态变化。然后,我们使用来自复制网络(RN)方法,网络传递,T和平均路径长度L. A和A和T的时间轮廓的两种测量,在多条带,α,β,低γ和高γ上表征了多条带,α,β,低γ和高γ的动态行为。 β表示吞咽循环围绕吞咽循环围绕的动态特性发生突然变化,而L的时间轮廓表明,吞咽循环onsets的范围为-200至-150 ms和200ms,呈A和β都表现出大的变化范围。因此,为了进一步了解皮质振荡对行为的累积,特别是吞咽,传统光谱方法的组合和诸如RN方法的各种动力学方法是必不可少的。

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