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源自缓慢钾离子电导的细胞短期记忆。

Cellular short-term memory from a slow potassium conductance.

作者信息

Turrigiano G G, Marder E, Abbott L F

机构信息

Department of Biology, Brandeis University, Waltham, Massachusetts 02254, USA.

出版信息

J Neurophysiol. 1996 Feb;75(2):963-6. doi: 10.1152/jn.1996.75.2.963.

Abstract
  1. We use the dynamic clamp to add the slowly inactivating and slowly recovering K+ conductance Kv1.3 to cultured stomatogastric ganglion neurons. 2. Introduction of Kv1.3 produced long delays to firing during depolarization. Additionally, the slow recovery from inactivation produced an increase in neuronal excitability after a depolarizing input that outlasted the input by many seconds. Finally, when introduced into bursting neurons, Kv1.3 produced a long-lasting depolarization-induced switch between tonic and burst firing. 3. These data demonstrate that the slow kinetics of a K+ conductance can produce a form of cellular short-term memory that is independent of any changes in synaptic efficacy.
摘要
  1. 我们使用动态钳位技术,将缓慢失活且缓慢恢复的钾离子通道Kv1.3导入培养的口胃神经节神经元中。2. Kv1.3的导入在去极化过程中产生了长时间的放电延迟。此外,从失活状态缓慢恢复导致在去极化输入后神经元兴奋性增加,这种增加在输入结束后持续了数秒。最后,当导入爆发性放电神经元时,Kv1.3产生了一种持久的去极化诱导的紧张性放电和爆发性放电之间的转换。3. 这些数据表明,钾离子通道的缓慢动力学可以产生一种细胞短期记忆形式,这种形式独立于突触效能的任何变化。

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