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大鼠上丘神经元的电生理和形态学特性。I. 中间层神经元

Electrophysiological and morphological properties of neurons in the rat superior colliculus. I. Neurons in the intermediate layer.

作者信息

Saito Y, Isa T

机构信息

Department of Integrative Physiology, National Institute for Physiological Sciences, Myodaiji, Okazaki 444-8585, Japan.

出版信息

J Neurophysiol. 1999 Aug;82(2):754-67. doi: 10.1152/jn.1999.82.2.754.

Abstract

To begin characterizing the neural elements underlying the dynamic properties of local circuits in the mammalian superior colliculus (SC), electrophysiological and morphological properties of individual neurons in the intermediate layer [stratum griseum intermediale (SGI)] were investigated using whole cell patch-clamp recording and intracellular staining with biocytin in slice preparations from young (17-22 days old) and adult rats (7-8 wk old). Voltage responses to depolarizing current pulses of 223 neurons recorded in young rats were classified into six subclasses: regular-spiking neurons (n = 113), interspike intervals during depolarizing current pulses were constant; late-spiking neurons (n = 48), initiation of repetitive firing was delayed markedly from the onset of depolarizing pulses because of a transient hyperpolarization caused by A-like currents; burst-spiking neurons (n = 29), transient burst firing due to low-threshold Ca(2+) channels were observed at the firing threshold level; fast-spiking neurons (n = 19), constant repetitive firings at frequencies >100 Hz were observed for the duration of the depolarizing pulse; neurons with marked spike frequency adaptation (n = 11), interspike intervals more than doubled due to spike frequency adaptation during depolarizing pulses; and neurons with rapid spike inactivation (n = 3), spike amplitude rapidly reduced, width increased during depolarizing pulses, and spiking was terminated after generating a few spikes. In response to hyperpolarizing current pulses, two different types of inward rectification were observed; time-dependent inward rectification by hyperpolarization-activated current (I(h); n = 29) and time-independent inward rectification (n = 111). Morphological analysis showed that neurons expressing time-dependent inward rectification by I(h) had large somata, extended divergent dendrites dorsally into the superficial layers, and projected axons ventrally and sometimes dorsally, all characteristic features of wide-field vertical cells. Other neurons exhibited heterogeneous morphological properties, such as multipolar, fusiform, horizontal, or pyramidal-shaped cells. In adult rats, a total of 44 neurons showed similar electrophysiological properties except for the last type. These results indicate that the local circuits of the SC include neurons with at least five different firing properties and two different rectification properties; each with distinct electrophysiological and morphological characteristics that may be correlated with the functional output of the SC.

摘要

为了开始表征哺乳动物上丘(SC)中局部回路动态特性背后的神经元件,我们使用全细胞膜片钳记录和生物胞素细胞内染色技术,在幼年(17 - 22日龄)和成年大鼠(7 - 8周龄)的脑片标本中,研究了中间层[中间灰质层(SGI)]单个神经元的电生理和形态学特性。在幼年大鼠中记录的223个神经元对去极化电流脉冲的电压反应被分为六个亚类:规则放电神经元(n = 113),去极化电流脉冲期间的峰间期恒定;晚放电神经元(n = 48),由于A类电流引起的短暂超极化,重复放电的起始明显延迟于去极化脉冲的开始;爆发式放电神经元(n = 29),在放电阈值水平观察到由于低阈值Ca(2+)通道导致的短暂爆发式放电;快速放电神经元(n = 19),在去极化脉冲持续期间观察到频率>100 Hz的恒定重复放电;具有明显放电频率适应的神经元(n = 11),由于去极化脉冲期间的放电频率适应,峰间期增加超过一倍;以及具有快速放电失活的神经元(n = 3),在去极化脉冲期间,动作电位幅度迅速降低,宽度增加,并且在产生几个动作电位后放电终止。对超极化电流脉冲的反应中,观察到两种不同类型的内向整流;由超极化激活电流(I(h))引起的时间依赖性内向整流(n = 29)和时间非依赖性内向整流(n = 111)。形态学分析表明,通过I(h)表现出时间依赖性内向整流的神经元具有大的胞体,背侧延伸到浅层的发散性树突,并且轴突向腹侧投射,有时也向背侧投射,这些都是广域垂直细胞的所有特征。其他神经元表现出异质的形态学特性,如多极、梭形、水平或金字塔形细胞。在成年大鼠中,除了最后一种类型外,共有44个神经元表现出相似的电生理特性。这些结果表明,上丘的局部回路包括具有至少五种不同放电特性和两种不同整流特性的神经元;每种神经元都具有独特的电生理和形态学特征,这些特征可能与上丘的功能输出相关。

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