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Propofol anesthesia reduces Lempel-Ziv complexity of spontaneous brain activity in rats

机译:异丙酚麻醉降低了大鼠自发性脑活动的LEMPEL-ZIV复杂性

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摘要

Consciousness is thought to scale with brain complexity, and it may be diminished in anesthesia. Lempel-Ziv complexity (LZC) of field potentials has been shown to be a promising measure of the level of consciousness in anesthetized human subjects, neurological patients, and across the sleep-wake states in rats. Whether this relationship holds for intrinsic networks obtained by functional brain imaging has not been tested. To fill this gap of knowledge, we estimated LZC from large-scale dynamic analysis of functional magnetic resonance images (fMRI) in conscious sedated and unconscious anesthetized rats. Blood oxygen dependent (BOLD) signals were obtained from 30-min whole-brain resting-state scans while the anesthetic propofol was infused intravenously at constant infusion rates of 20 mg/kg/h (conscious sedated) and 40 mg/kg/h (unconscious). Dynamic brain networks were defined at voxel level by sliding window analysis of regional homogeneity (ReHo) of the BOLD signal. From scans performed at low to high propofol dose, the LZC was significantly reduced by 110%. The results suggest that the difference in LZC between conscious sedated and anesthetized unconscious subjects is conserved in rats and this effect is detectable in large-scale brain network obtained from fMRI. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:意识被认为是脑的复杂性规模,它可能在麻醉减弱。朗佩尔 - 谢夫场电位的复杂度(LZC)已被证明是在麻醉的人类受试者,神经病患者意识水平的衡量看好,和整个睡眠 - 觉醒状态的影响。无论这关系适用于由功能性脑成像获得固有的网络还没有被测试。为了填补知识的这种差距,我们在有意识的镇静和无意识的麻醉大鼠功能性磁共振影像(fMRI)技术的大型动态分析估计LZC。血氧依赖性(BOLD)信号,从30分钟的全脑静息态扫描获得而麻醉剂丙泊酚以20毫克/公斤/小时(有意识镇静)和40毫克/公斤/小时恒定输注速率(静脉内输注无意识)。动态脑网络是通过滑动BOLD信号的局部一致性(ReHo值)的分析窗口在体素级定义的。在从低到高剂量的丙泊酚进行扫描时,LZC被显著由110%降低。结果表明,有意识的镇静和麻醉昏迷主体之间在LZC的差异在大鼠中是保守的,这效果是从功能磁共振成像获得的大型脑网络检测。 (c)2016 Elsevier Ireland Ltd.保留所有权利。

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