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全身麻醉药对体外培养的大鼠海马中卡巴胆碱诱发的γ振荡的影响。

The effects of general anaesthetics on carbachol-evoked gamma oscillations in the rat hippocampus in vitro.

作者信息

Dickinson R, Awaiz S, Whittington M A, Lieb W R, Franks N P

机构信息

Biophysics Group, Imperial College of Science, Technology & Medicine, Blackett Laboratory, Prince Consort Road, London SW7 2BW, UK.

出版信息

Neuropharmacology. 2003 Jun;44(7):864-72. doi: 10.1016/s0028-3908(03)00083-2.

Abstract

The effects of general anaesthetics and temperature on carbachol-evoked gamma oscillations in the rat hippocampal brain slice preparation were investigated. The frequency of the oscillations was found to be dependent on temperature in the range 32-25 degrees C, with a linear reduction in frequency from 40-17 Hz over this temperature range. The volatile anaesthetics isoflurane and halothane, and the intravenous anaesthetics thiopental, propofol and R(+)-etomidate caused a reduction in the frequency of the oscillations, in a concentration-dependent manner, over a range of clinically relevant concentrations. On the other hand, the intravenous agent ketamine and the "inactive" S(-)-isomer of etomidate had no significant effect on the oscillation frequency. The oscillations were markedly asymmetric over one cycle with a relatively rapid "rising" phase followed by a slower "decaying" phase. The decrease in oscillation frequency was due to an increase in the time-course of the "decaying phase" of the oscillation with little effect on the "rising" phase, consistent with the idea that carbachol-evoked gamma oscillations are trains of GABAergic inhibitory postsynaptic potentials and that the anaesthetics are acting postsynaptically at the GABA(A) receptor.

摘要

研究了全身麻醉药和温度对大鼠海马脑片制备中卡巴胆碱诱发的γ振荡的影响。发现振荡频率在32 - 25摄氏度范围内依赖于温度,在此温度范围内频率从40 - 17赫兹呈线性降低。挥发性麻醉药异氟烷和氟烷,以及静脉麻醉药硫喷妥钠、丙泊酚和R(+) - 依托咪酯在一系列临床相关浓度范围内,以浓度依赖的方式导致振荡频率降低。另一方面,静脉用药氯胺酮和依托咪酯的“无活性”S(-) - 异构体对振荡频率没有显著影响。振荡在一个周期内明显不对称,具有相对快速的“上升”阶段,随后是较慢的“衰减”阶段。振荡频率的降低是由于振荡“衰减阶段”的时间进程增加,而对“上升”阶段影响很小,这与卡巴胆碱诱发的γ振荡是GABA能抑制性突触后电位序列且麻醉药在GABA(A)受体突触后起作用的观点一致。

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