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体外测量兔海马神经元的条件特异性膜变化。

Conditioning-specific membrane changes of rabbit hippocampal neurons measured in vitro.

作者信息

Disterhoft J F, Coulter D A, Alkon D L

出版信息

Proc Natl Acad Sci U S A. 1986 Apr;83(8):2733-7. doi: 10.1073/pnas.83.8.2733.

Abstract

Intracellular recordings were made from hippocampal CA1 pyramidal neurons within brain slices of nictitating membrane conditioned, pseudoconditioned, and naive adult male albino rabbits. All neurons included (26 conditioned, 26 pseudoconditioned, and 28 naive) had stable penetration and at least 60 mV action potential amplitudes. Mean input resistances were approximately equal to 60 mu omega for the three groups. A marked reduction in the afterhyperpolarization (AHP) following an impulse was apparent for conditioned (x = -0.98 mV) as compared to the pseudoconditioned (x = -1.7 mV) and naive (x = -2.0 mV) neurons. The AHP has been attributed previously to activation of a Ca2+-dependent outward K+ current. The distribution of AHP amplitudes for the conditioned group included a new lower range of values for which there was little overlap with the other groups. The conditioning-specific reduction of AHP may be due to reduction of ICa2+-K+ as shown previously for conditioned Hermissenda neurons. This conditioning-induced biophysical alteration of the CA1 pyramidal cell must be stored by mechanisms intrinsic to the hippocampal slice and cannot be explained as a consequence of changes of presynaptic input arising elsewhere in the brain. Our experiments demonstrate the feasibility of analyzing cellular mechanisms of associative learning in mammalian brain with the in vitro brain slice technique.

摘要

在已建立瞬膜条件反射、假条件反射和未处理的成年雄性白化兔脑片的海马CA1锥体神经元上进行细胞内记录。纳入的所有神经元(26只条件反射组、26只假条件反射组和28只未处理组)都有稳定的穿刺且动作电位幅度至少为60 mV。三组的平均输入电阻大致相等,约为60兆欧。与假条件反射组(x = -1.7 mV)和未处理组(x = -2.0 mV)神经元相比,条件反射组神经元(x = -0.98 mV)冲动后的超极化后电位(AHP)明显降低。AHP先前被认为是由Ca2+依赖性外向K+电流的激活所致。条件反射组AHP幅度的分布包括一个新的更低值范围,与其他组几乎没有重叠。AHP的条件反射特异性降低可能是由于ICa2+-K+的减少,如先前在条件反射的海兔神经元中所示。海马脑片内源性机制必定存储了这种条件反射诱导的CA1锥体细胞生物物理改变,而不能解释为脑内其他部位突触前输入变化的结果。我们的实验证明了用体外脑片技术分析哺乳动物脑内联想学习细胞机制的可行性。

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Loss of recent memory after bilateral hippocampal lesions.双侧海马体损伤后近期记忆丧失。
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