Frick Andreas, Johnston Daniel
Baylor College of Medicine, Division of Neuroscience, Houston, Texas 77030, USA.
J Neurobiol. 2005 Jul;64(1):100-15. doi: 10.1002/neu.20148.
Dendrites are equipped with a plethora of voltage-gated ion channels that greatly enrich the computational and storage capacity of neurons. The excitability of dendrites and dendritic function display plasticity under diverse circumstances such as neuromodulation, adaptation, learning and memory, trauma, or disorders. This adaptability arises from alterations in the biophysical properties or the expression levels of voltage-gated ion channels-induced by the activity of neurotransmitters, neuromodulators, and second-messenger cascades. In this review we discuss how this plasticity of dendritic excitability could alter information transfer and processing within dendrites, neurons, and neural networks under physiological and pathological conditions.
树突配备有大量电压门控离子通道,极大地增强了神经元的计算和存储能力。在诸如神经调节、适应、学习与记忆、创伤或疾病等多种情况下,树突的兴奋性和树突功能表现出可塑性。这种适应性源于神经递质、神经调质和第二信使级联反应的活动所诱导的电压门控离子通道生物物理特性或表达水平的改变。在本综述中,我们讨论了在生理和病理条件下,树突兴奋性的这种可塑性如何改变树突、神经元和神经网络内的信息传递与处理。