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麻醉状态下新生大鼠夹尾刺激的脑电图反应

Electroencephalographic responses to tail clamping in anaesthetized rat pups.

作者信息

Diesch T J, Mellor D J, Johnson C B, Lentle R G

机构信息

Animal Welfare Science and Bioethics Centre, Riddet Institute, College of Sciences, Massey University, Palmerston North, New Zealand.

出版信息

Lab Anim. 2009 Jul;43(3):224-31. doi: 10.1258/la.2008.0080083. Epub 2009 Feb 23.

Abstract

We investigated electroencephalographic (EEG) responses to tail clamping in lightly anaesthetized rat pups (5-22 days) in order to determine the ontogeny of EEG activity and at what age they may be capable of experiencing pain. Median frequency (F50) and spectral edge frequency (F95) of the power spectrum in the range of 1-30 Hz were determined before and after the application of a noxious stimulus and power spectra were compared by multivariate analysis. There was a postnatal increase in EEG power as, before clamping, pups aged 5-7 days exhibited isoelectric traces, whereas those aged 12-14 days and 21-22 days had intermittent EEG activity where the power in all frequencies was significantly lower at the former than at the latter age. Pups aged 5-7 days exhibited no EEG response to clamping in view of their isoelectric traces. Pups aged 12-14 days showed a significant decrease in F95 (P=0.002), whereas those aged 21-22 days showed highly significant reduction in F50 and F95 (P=0.028 and P<0.001, respectively) as well as changes in EEG power of specific frequencies after clamping. The results and related literature suggest that rat pups aged 5-7 days and younger are not likely to perceive pain and that the ability to perceive pain develops gradually between postnatal ages 12-14 days and 21-22 days.

摘要

我们研究了轻度麻醉的幼鼠(5 - 22日龄)对夹尾刺激的脑电图(EEG)反应,以确定EEG活动的个体发生情况以及它们在什么年龄可能会经历疼痛。在施加有害刺激前后,测定1 - 30Hz范围内功率谱的中位数频率(F50)和频谱边缘频率(F95),并通过多变量分析比较功率谱。随着出生后发育,EEG功率增加,因为在夹尾前,5 - 7日龄的幼鼠脑电图呈等电位,而12 - 14日龄和21 - 22日龄的幼鼠有间歇性EEG活动,且所有频率的功率在前一龄期显著低于后一龄期。鉴于其等电位脑电图,5 - 7日龄的幼鼠对夹尾无EEG反应。12 - 14日龄的幼鼠F95显著降低(P = 0.002),而21 - 22日龄的幼鼠夹尾后F50和F95显著降低(分别为P = 0.028和P < 0.001),且特定频率的EEG功率也有变化。结果及相关文献表明,5 - 7日龄及更小的幼鼠不太可能感知疼痛,而感知疼痛的能力在出生后12 - 14日龄至21 - 22日龄之间逐渐发展。

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