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大鼠嗅周皮层V层中的三类锥体神经元。

Three classes of pyramidal neurons in layer V of rat perirhinal cortex.

作者信息

Moyer James R, McNay Ewan C, Brown Thomas H

机构信息

Department of Psychology, Yale University, New Haven, Connecticut 06520, USA.

出版信息

Hippocampus. 2002;12(2):218-34. doi: 10.1002/hipo.1110.

Abstract

Whole-cell recordings from 140 pyramidal neurons in layer V of rat perirhinal cortex (PR) revealed three distinct firing patterns: regular spiking (RS, 76%), burst spiking (BS, 9%), and late spiking (LS, 14%). LS neurons have not previously been reported in layer V of any cortical region. LS cells in layer V of PR exhibited delays of up to 12 s from onset of a depolarizing current step to spike threshold, followed by sustained firing. In contrast, pyramidal cells in layer V of other cortical regions contain only RS and BS cells. Within PR, the percentage of LS neurons in layer V differs markedly from what we previously observed in layers II/III (50% LS) and VI (90% LS). Morphologically, BS neurons in layer V of PR had thick primary apical dendrites that terminated in a tuft within layer I, whereas RS and LS cells had relatively thin primary apicals that terminated either diffusely or in a layer I tuft. At holding potentials near rest, PR neurons exhibited small (approximately 15 pA), inward, spontaneous postsynaptic currents (PSCs) that were indistinguishable among the three cell types. Currents evoked by minimal stimulation of layer I were about 2.8 times larger than the spontaneous PSCs. Evoked currents had unusually long onset latencies with little variation in latency, consistent with monosynaptic responses evoked by stimulation of unmyelinated fibers. The prevalence of LS cells in combination with the long-latency monosynaptically evoked PSCs suggested that PR is not a region of rapid throughput. This is consistent with anatomical data suggesting that PR is a higher-level association cortex. These data further advance an emerging picture of PR as a cortical region with a unique distribution of cell types different from other cortical regions.

摘要

对大鼠嗅周皮质(PR)第V层的140个锥体神经元进行全细胞记录,发现了三种不同的放电模式:规则放电(RS,76%)、爆发式放电(BS,9%)和延迟放电(LS,14%)。此前在任何皮质区域的第V层中均未报道过LS神经元。PR第V层的LS细胞在去极化电流阶跃开始到动作电位阈值之间表现出长达12秒的延迟,随后持续放电。相比之下,其他皮质区域第V层的锥体细胞仅包含RS和BS细胞。在PR内,第V层中LS神经元的百分比与我们之前在第II/III层(50% LS)和第VI层(90% LS)中观察到的情况明显不同。在形态学上,PR第V层的BS神经元具有粗大的初级顶树突,其终止于第I层的一个簇中,而RS和LS细胞具有相对较细的初级顶树突,其要么分散终止,要么终止于第I层的一个簇中。在接近静息的钳制电位下,PR神经元表现出小的(约15 pA)内向自发突触后电流(PSC),这在三种细胞类型之间没有区别。对第I层进行最小刺激所诱发的电流比自发PSC大约2.8倍。诱发电流具有异常长的起始潜伏期,潜伏期变化很小,这与对无髓纤维刺激诱发的单突触反应一致。LS细胞的存在以及长潜伏期单突触诱发的PSC表明PR不是一个快速信息传递的区域。这与解剖学数据一致,表明PR是一个高级联合皮质。这些数据进一步推进了关于PR作为一个具有与其他皮质区域不同的独特细胞类型分布的皮质区域的新认识。

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