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水合氯醛麻醉对听觉稳态反应和抑制性门控的差异调制。

Differential modulation of the auditory steady state response and inhibitory gating by chloral hydrate anesthesia.

机构信息

Department of Physiology, College of Basic Medical Science, China Medical University, No. 77 Puhe Road, Shenyang North New Area, Shenyang, Liaoning Province, 110122, P. R. China.

出版信息

Sci Rep. 2018 Feb 27;8(1):3683. doi: 10.1038/s41598-018-21920-x.

Abstract

Auditory steady state response (ASSR) and inhibitory gating (IG) are electrophysiological examinations commonly used to evaluate the sensory and cognitive functions of the brain. In some clinic examinations and animal experiments, general anesthesia is necessary to conduct electrophysiological recordings. However, the effects of anesthesia on ASSR and IG remain unclear. For this reason, we recorded local field potentials though electrodes implanted in different brain areas of rats: the auditory cortex (AC), hippocampus (HC), amygdala (AMY), and prefrontal cortex (PFC), and compared the characteristics of ASSR and IG under anesthetized and conscious conditions. We found that ASSR signals were the strongest in the AC, and decreased sequentially in the HP, AMY, and PFC. Chloral hydrate anesthesia significantly reduced the power and phase-locking of ASSR in the AC, HP, and AMY. In contrast, the extent of IG in the AC was weakest and it increased sequentially in the HP, AMY, and PFC. Anesthesia had less effect on the extent of IG. Our results suggest that ASSR and IG may originate from different neural circuits and that IG is more resistant to general anesthesia and therefore better suited to examining the functioning of non-auditory brain regions.

摘要

听觉稳态反应(ASSR)和抑制性门控(IG)是常用于评估大脑感觉和认知功能的电生理检查。在一些临床检查和动物实验中,需要全身麻醉来进行电生理记录。然而,麻醉对 ASSR 和 IG 的影响尚不清楚。为此,我们通过在大鼠不同脑区(听觉皮层(AC)、海马(HC)、杏仁核(AMY)和前额叶皮层(PFC))植入的电极记录局部场电位,并比较了麻醉和清醒状态下 ASSR 和 IG 的特征。我们发现 ASSR 信号在 AC 最强,在 HP、AMY 和 PFC 中依次减弱。水合氯醛麻醉显著降低了 AC、HP 和 AMY 中 ASSR 的功率和锁相。相比之下,AC 中的 IG 程度最弱,在 HP、AMY 和 PFC 中依次增强。麻醉对 IG 程度的影响较小。我们的结果表明,ASSR 和 IG 可能源自不同的神经回路,IG 对全身麻醉的抵抗力较弱,因此更适合检查非听觉脑区的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c569/5829141/f9e668873ebf/41598_2018_21920_Fig1_HTML.jpg

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