Postnatal maturational properties of rat parafascicular thalamic neurons recorded in vitro.

K D Phelan, H R Mahler, T Deere, C B Cross, C Good, E Garcia-Rill
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引用次数: 15

Abstract

Thalamic relay neurons have homogeneous, adult-like firing properties and similar morphology by 12 days postnatally (PN 12). Parafascicular (Pf) neurons have a different morphology compared with typical thalamic relay neurons, but the development of their electrophysiological properties is not well studied. Intracellular recordings in PN 12-50 Pf neurons revealed several heterogeneous firing patterns different from those in thalamic relay neurons. Two types of cells were identified: Type I cells displayed a fast afterhyperpolarization (AHP) followed by a large-amplitude, slow AHP; whereas Type II cells had only a fast AHP. These cell types had overlapping membrane properties but differences in excitability. Some properties of Pf neurons were adult-like by PN 12, but, unlike thalamic relay neurons, there were significant maturational changes thereafter, including decreased action potential (AP) duration, increased fast AHP amplitude and increased excitability. Pf neurons did not exhibit rhythmic bursting and generally lacked low-threshold spike (LTS) responses that characterize thalamic relay neurons. Pf neurons exhibited nonlinear I-V relationships, and only a third of the cells expressed the time and voltage-dependent hyperpolarization activated (Ih) current, which declined with age. These results indicate that the morphological differences between Pf neurons and typical thalamic relay neurons are paralleled by electrophysiological differences, and that Pf membrane properties change during postnatal development.

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体外记录大鼠丘脑束旁神经元的出生后成熟特性。
丘脑中继神经元在出生后12天具有同质的、成人样的放电特性和相似的形态(pn12)。束旁神经元(Pf)与典型的丘脑中继神经元具有不同的形态,但其电生理特性的发展尚未得到充分的研究。pn12 - 50pf神经元的细胞内记录显示了几种不同于丘脑中继神经元的异质放电模式。两种类型的细胞被鉴定出来:I型细胞表现出快速的后超极化(AHP),然后是振幅较大的后超极化(AHP);而II型细胞只有快速AHP。这些细胞具有重叠的膜性质,但兴奋性不同。pn12作用后,Pf神经元的一些特性与成人相似,但与丘脑中继神经元不同,pn12作用后Pf神经元发生了明显的成熟变化,包括动作电位(AP)持续时间缩短、AHP振幅快速增加和兴奋性增加。Pf神经元不表现出有节奏的爆发,通常缺乏丘脑中继神经元特征的低阈峰值(LTS)反应。Pf神经元表现出非线性的I-V关系,只有三分之一的细胞表达了时间和电压依赖的超极化激活电流(Ih),随年龄的增长而下降。这些结果表明,Pf神经元与典型丘脑接力神经元的形态差异与电生理差异是平行的,并且Pf膜性质在出生后发育过程中发生了变化。
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