Comparative physiological and serotoninergic properties of pulvinar neurons in the monkey, cat and ferret

James E. Monckton, David A. McCormick
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引用次数: 9

Abstract

The basic electrophysiological properties and responses to serotonin of thalamocortical (TC) neurons in the ferret, cat, and monkey pulvinar were compared. Morphologically, thalamocortical neurons in these three species were similar, except for the presence of beaded dendrites in many monkey neurons. In all three species, the neurons exhibited two distinct firing modes: single spike activity and low threshold Ca2+-spike mediated bursting. However, in monkeys, the low threshold Ca2+ spikes were followed by a prominent 50–100 ms afterhyperpolarization that could result in the generation of an additional rebound Ca2+ spike. The application of 5-HT to thalamocortical neurons in cat and monkey pulvinar resulted in a depolarization and an increase in membrane conductance through an enhancement of the hyperpolarization-activated cation current, Ih, apparently through the activation of 5-HT7 receptors. In contrast, the application of serotonin to ferret pulvinar neurons resulted in a prominent hyperpolarization, owing to an increase in membrane potassium conductance. In monkey and ferret, application of serotonin could result in barrages of IPSPs in thalamocortical neurons. These results indicate that there are significant species-dependent differences in both the electrophysiological and pharmacological properties of pulvinar thalamocortical neurons.

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猴、猫和雪貂枕状神经元的比较生理和血清素能特性
比较了雪貂、猫和猴丘脑皮层(TC)神经元的基本电生理特性和对血清素的反应。在形态学上,这三个物种的丘脑皮层神经元是相似的,除了在许多猴子神经元中存在珠状树突。在这三个物种中,神经元表现出两种不同的放电模式:单峰活动和低阈值Ca2+峰介导的破裂。然而,在猴子中,低阈值Ca2+尖峰之后,超极化后50-100毫秒会出现明显的Ca2+尖峰反弹,这可能导致额外的Ca2+尖峰反弹。将5-羟色胺应用于猫和猴丘脑皮层神经元,通过增强超极化激活的阳离子电流Ih(显然是通过激活5-HT7受体),导致去极化和膜电导增加。相反,血清素作用于雪貂丘脑神经元,由于膜钾电导的增加,导致了明显的超极化。在猴子和雪貂中,5 -羟色胺的应用可能导致丘脑皮质神经元中ipsp的阻滞。这些结果表明,丘脑丘脑皮质神经元的电生理和药理学性质存在显著的物种依赖性差异。
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