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大鼠前额叶皮层V-VI层主要锥体神经元在体外的电生理和形态学特性

Electrophysiological and morphological properties of layers V-VI principal pyramidal cells in rat prefrontal cortex in vitro.

作者信息

Yang C R, Seamans J K, Gorelova N

机构信息

Department of Psychology, University of British Columbia, Vancouver, Canada.

出版信息

J Neurosci. 1996 Mar 1;16(5):1904-21. doi: 10.1523/JNEUROSCI.16-05-01904.1996.

Abstract

This study examined the electrophysiological and morphological characteristics of layers V-VI pyramidal prefrontal cortex (PFC) neurons. In vitro intracellular recordings coupled with biocytin injections that preserved some of the PFC efferents to the nucleus accumbens (NAc) were made in brain slices. Four principal pyramidal cell types were identified and classified as regular spiking (RS) (19%), intrinsic bursting (IB) (64%), repetitive oscillatory bursting (ROB) (13%), and intermediate (IM) (4%) types. All PFC cells exhibited either subthreshold oscillation in membrane voltage or pacemaker-like rhythmic firing. IB neurons were demonstrated electrophysiologically and cytochemically to be PFC-->NAc neurons. In all IB and some RS neurons, a tetrodotoxin-sensitive, slowly inactivating Na+ current and a transient Ni(2+)-sensitive, low-threshold Ca2+ current mediated subthreshold inward rectification. During sustained membrane depolarization, the Na+ current was opposed by a 4-aminopyridine-sensitive, outwardly rectifying, slowly inactivating K+ current. Together, these three currents controlled the firing threshold of the PFC neurons. All IB and ROB cells also had postspike Ca(2+)-mediated depolarizing afterpotentials, postburst Ca(2+)-dependent after hyperpolarizations, and low- and high-threshold Ca2+ spikes. In addition, ROB cells had a hyperpolarizing "sag" mediated by the cationic conductance, Ih. IB and ROB neurons had extensive dendritic trees and radially ascending or tangentially projecting axon collaterals. RS and IM cells had comparatively simpler morphological profiles. These electrophysiological and morphological properties of the four principal pyramidal PFC cell types have provided valuable details for understanding further how PFC processes input and transmit outputs to regions such as the NAc.

摘要

本研究检测了前额叶皮质(PFC)V - VI层锥体神经元的电生理和形态学特征。在脑片中进行了体外细胞内记录,并结合生物胞素注射,该方法保留了部分PFC向伏隔核(NAc)发出的传出纤维。确定了四种主要的锥体细胞类型,并分类为规则发放(RS)型(19%)、内在爆发(IB)型(64%)、重复振荡爆发(ROB)型(13%)和中间(IM)型(4%)。所有PFC细胞均表现出膜电压的阈下振荡或类似起搏器的节律性放电。电生理和细胞化学实验证明IB神经元是PFC→NAc神经元。在所有IB神经元和部分RS神经元中,一种对河豚毒素敏感、缓慢失活的Na⁺电流和一种对镍离子(Ni²⁺)敏感、低阈值的Ca²⁺电流介导阈下内向整流。在持续的膜去极化过程中,Na⁺电流被一种对4 - 氨基吡啶敏感、外向整流、缓慢失活的K⁺电流所对抗。这三种电流共同控制了PFC神经元的放电阈值。所有IB和ROB细胞还具有锋电位后Ca²⁺介导的去极化后电位、爆发后Ca²⁺依赖性超极化后电位以及低阈值和高阈值Ca²⁺峰电位。此外,ROB细胞具有由阳离子电导Ih介导的超极化“下陷”。IB和ROB神经元具有广泛的树突树以及径向上升或切向投射的轴突侧支。RS和IM细胞的形态轮廓相对简单。这四种主要的PFC锥体细胞类型的这些电生理和形态学特性为进一步理解PFC如何处理输入并向诸如NAc等区域传递输出提供了有价值的细节。

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