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Cross-approximate entropy of cortical local field potentials quantifies effects of anesthesia - a pilot study in rats

机译:皮质局部场电位的交叉近似熵量化了麻醉作用-在大鼠中的一项初步研究

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摘要

BackgroundAnesthetics dose-dependently shift electroencephalographic (EEG) activity towards high-amplitude, slow rhythms, indicative of a synchronization of neuronal activity in thalamocortical networks. Additionally, they uncouple brain areas in higher (gamma) frequency ranges possibly underlying conscious perception. It is currently thought that both effects may impair brain function by impeding proper information exchange between cortical areas. But what happens at the local network level? Local networks with strong excitatory interconnections may be more resilient towards global changes in brain rhythms, but depend heavily on locally projecting, inhibitory interneurons. As anesthetics bias cortical networks towards inhibition, we hypothesized that they may cause excessive synchrony and compromise information processing already on a small spatial scale. Using a recently introduced measure of signal independence, cross-approximate entropy (XApEn), we investigated to what degree anesthetics synchronized local cortical network activity. We recorded local field potentials (LFP) from the somatosensory cortex of three rats chronically implanted with multielectrode arrays and compared activity patterns under control (awake state) with those at increasing concentrations of isoflurane, enflurane and halothane.
机译:背景麻醉剂将脑电图(EEG)的剂量依赖性地转移至高振幅,缓慢的节律,这表明丘脑皮质网络中神经元活动的同步。此外,它们可以在较高的(gamma)频率范围内解耦大脑区域,可能是意识感知的基础。目前认为这两种作用都可能通过阻碍皮层区域之间的适当信息交换而损害大脑功能。但是在本地网络级别会发生什么?具有强兴奋性相互联系的局部网络可能对脑节律的整体变化更具适应性,但在很大程度上取决于局部投射的抑制性中间神经元。当麻醉剂使皮质网络偏向抑制时,我们假设它们可能会导致过度同步并损害已经在较小空间范围内进行的信息处理。使用最近引入的信号独立性,互近似熵(XApEn)的度量,我们研究了麻醉剂在多大程度上同步了局部皮质网络的活动。我们记录了长期植入多电极阵列的三只大鼠的体感皮层的局部场电势(LFP),并比较了在对照(清醒状态)下与异氟烷,环戊烷和氟烷的浓度增加时的活动模式。

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