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Extracellular activation and membrane conductances of neurones in the guinea-pig deep cerebellar nuclei in vitro.

机译:豚鼠深小脑核中神经元的细胞外激活和膜电导。

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摘要

The responses of cerebellar nuclear cells to extracellular stimulation in a slice preparation were studied and the ionic basis of their electroresponsiveness was investigated with blockers of membrane conductances and with ion substitutions in the extracellular medium. The cells could be activated antidromically from the cerebellar cortex and the white matter surrounding the nuclei. The dominating response to orthodromic stimulation was an inhibitory synaptic potential presumably produced by activation of Purkinje cell fibres. The action potentials and the subthreshold spikelets were shown to be Na+ dependent and are presumably generated by a voltage-dependent inactivating Na+ conductance. Plateau potentials with a low threshold were also Na+ dependent, but these long-lasting potentials are probably produced by activation of a voltage-dependent non-inactivating Na+ conductance. Plateau potentials with a high threshold and high-threshold spikelets were Ca2+ dependent and seem to be generated by non-inactivating and possibly inactivating Ca2+ conductances. The spike after-hyperpolarizations had an early voltage-dependent K+ component and a late Ca2+-dependent K+ component. They are therefore produced by voltage-sensitive and Ca2+-dependent K+ conductances. By analogy with the distribution of conductances in Purkinje cells it is proposed that the Na+ conductances are mainly located in the somatic and axonal membrane and that the Ca2+ conductances are located in the dendrites. The functional implications of the complex electroresponsive properties of cerebellar nuclear cells are discussed.
机译:研究了切片制剂中小脑核细胞对细胞外刺激的反应,并通过膜电导阻滞剂和细胞外培养基中的离子置换研究了其电反应性的离子基础。可以从小脑皮层和细胞核周围的白质中抗激活地激活细胞。对正畸刺激的主要反应是抑制性突触电位,大概是由Purkinje细胞纤维的活化产生的。动作电位和亚阈值小峰显示为Na +依赖性,大概是由电压依赖性失活的Na +电导产生的。具有低阈值的高原电位也依赖于Na +,但是这些持久电位可能是由电压依赖性非灭活Na +电导的激活产生的。具有高阈值和高阈值小尖峰的高原电位是Ca2 +依赖性的,似乎是由非灭活的和可能灭活的Ca2 +电导产生的。尖峰后超极化具有早期的电压依赖性K +成分和晚期的Ca2 +依赖性K +成分。因此,它们是由电压敏感的和依赖Ca2 +的K +电导产生的。通过类似于浦肯野细胞中电导的分布,提出Na +电导主要位于体细胞和轴突膜中,而Ca 2+电导位于树突中。讨论了小脑核细胞复杂的电响应特性的功能含义。

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