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条件反射过程中兔海马神经元的动作电位降低与习得反应的获得相关。

AHP reductions in rabbit hippocampal neurons during conditioning correlate with acquisition of the learned response.

作者信息

Disterhoft J F, Golden D T, Read H L, Coulter D A, Alkon D L

机构信息

Department of Cell Biology and Anatomy, Northwestern University Medical School, Chicago, IL 60611.

出版信息

Brain Res. 1988 Oct 11;462(1):118-25. doi: 10.1016/0006-8993(88)90593-8.

DOI:10.1016/0006-8993(88)90593-8
PMID:3179727
Abstract

Young adult male albino rabbits were conditioned using a free field auditory conditioned stimulus (CS) and periorbital shock unconditioned stimulus (US) in a short delay eye blink paradigm. All rabbits received two 80-trial training sessions. Intracellular recordings were made from hippocampal CA1 pyramidal neurons within brain slices prepared 24 h following the second training session. All 46 CA1 neurons included in the analysis had stable penetration, at least 70 mV impulse amplitudes and at least 40 M omega input resistance. Recording and initial data analysis were done 'blind' regarding behavioral training performance of the rabbit from which the slices were prepared. The animals were separated into a High (86 +/- 6% CRs, n = 12), and Low (12 +/- 4% CRs, n = 10) Acquisition group based on the number of blink CRs shown on the second training day (P less than 0.001). CA1 pyramidal neurons from the High Acquisition group (n = 20) showed a significant reduction in the afterhypolarization (AHP) response following 4 impulses elicited by intracellular current injection as compared to neurons from the Low Acquisition group (n = 26). The mean maximal AHP amplitudes after 4 spikes were -2.9 +/- 0.34 mV and -4.0 +/- 0.31 mV, respectively, in the High and Low Acquisition groups (P less than 0.01). The size of the AHP examined at 100 ms intervals during the first 1.7 s after the current pulse proved to be reduced in the High group both when evaluated for all points (F = 5.88, df = 1.44, P less than 0.02) and for each of the individual time points (at least P less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在短期延迟眨眼范式中,使用自由场听觉条件刺激(CS)和眶周电击非条件刺激(US)对年轻成年雄性白化兔进行条件反射训练。所有兔子均接受了两个包含80次试验的训练疗程。在第二次训练疗程后的24小时制备的脑片中,从海马CA1锥体神经元进行细胞内记录。分析中纳入的所有46个CA1神经元都有稳定的穿刺,至少70 mV的冲动幅度和至少40 MΩ的输入电阻。记录和初始数据分析是在对制备切片的兔子的行为训练表现不知情的情况下进行的。根据第二次训练日显示的眨眼条件反射(CR)数量,将动物分为高(86±6% CRs,n = 12)和低(12±4% CRs,n = 10)习得组(P < 0.001)。与低习得组(n = 26)的神经元相比,高习得组(n = 20)的CA1锥体神经元在细胞内电流注入引发4次冲动后,超极化后电位(AHP)反应显著降低。高、低习得组在4次尖峰后的平均最大AHP幅度分别为-2.9±0.34 mV和-4.0±0.31 mV(P < 0.01)。在电流脉冲后的前1.7秒内,以100毫秒间隔检查的AHP大小在高组中被证明减小,无论是对所有点进行评估(F = 5.88,df = 1.44,P < 0.02)还是对每个单独的时间点进行评估(至少P < 0.05)。(摘要截断于250字)

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