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控制依赖于峰电位时间的突触可塑性的树突机制。

Dendritic mechanisms controlling spike-timing-dependent synaptic plasticity.

作者信息

Kampa Björn M, Letzkus Johannes J, Stuart Greg J

机构信息

Brain Research Institute, University of Zürich, Winterthurerstr. 190, 8057 Zürich, Switzerland.

出版信息

Trends Neurosci. 2007 Sep;30(9):456-63. doi: 10.1016/j.tins.2007.06.010. Epub 2007 Aug 31.

Abstract

The ability of neurons to modulate the strength of their synaptic connections has been shown to depend on the relative timing of pre- and postsynaptic action potentials. This form of synaptic plasticity, called spike-timing-dependent plasticity (STDP), has become an attractive model for learning at the single-cell level. Yet, despite its popularity in experimental and theoretical neuroscience, the influence of dendritic mechanisms in the induction of STDP has been largely overlooked. Several recent studies have investigated how active dendritic properties and synapse location within the dendritic tree influence STDP. These studies suggest the existence of learning rules that depend on firing mode and subcellular input location, adding unanticipated complexity to STDP. Here, we propose a new look at STDP that is focused on processing at the postsynaptic site in the dendrites, rather than on spike-timing at the cell body.

摘要

神经元调节其突触连接强度的能力已被证明取决于突触前和突触后动作电位的相对时间。这种形式的突触可塑性,称为尖峰时间依赖性可塑性(STDP),已成为单细胞水平学习的一个有吸引力的模型。然而,尽管它在实验和理论神经科学中很受欢迎,但树突机制在STDP诱导中的影响在很大程度上被忽视了。最近的几项研究调查了活跃的树突特性和树突树内的突触位置如何影响STDP。这些研究表明存在依赖于放电模式和亚细胞输入位置的学习规则,这给STDP增加了意想不到的复杂性。在这里,我们提出了一种对STDP的新看法,它专注于树突中突触后位点的处理,而不是细胞体处的尖峰时间。

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