超越峰电位时间:非线性可塑性和不可靠突触的作用。

Beyond spike timing: the role of nonlinear plasticity and unreliable synapses.

作者信息

Senn Walter

机构信息

Physiological Institute, University of Bern, Buehleplatz 5, 3012 Bern, Switzerland.

出版信息

Biol Cybern. 2002 Dec;87(5-6):344-55. doi: 10.1007/s00422-002-0350-1.

Abstract

Spike-timing-dependent plasticity (STDP) strengthens synapses that are activated immediately before a postsynaptic spike, and weakens those that are activated after a spike. To prevent an uncontrolled growth of the synaptic strengths, weakening must dominate strengthening for uncorrelated spike times. However, this weight-normalization property would preclude Hebbian potentiation when the pre- and postsynaptic neurons are strongly active without specific spike-time correlations. We show that nonlinear STDP as inherent in the data of Markram et al. [(1997) Science 275:213-215] can preserve the benefits of both weight normalization and Hebbian plasticity, and hence can account for learning based on spike-time correlations and on mean firing rates. As examples we consider the moving-threshold property of the Bienenstock-Cooper-Munro rule, the development of direction-selective simple cells by changing short-term synaptic depression, and the joint adaptation of axonal and dendritic delays. Without threshold nonlinearity at low frequencies, the development of direction selectivity does not stabilize in a natural stimulation environment. Without synaptic unreliability there is no causal development of axonal and dendritic delays.

摘要

尖峰时间依赖可塑性(STDP)增强在突触后尖峰之前立即被激活的突触,并削弱在尖峰之后被激活的突触。为防止突触强度无节制增长,对于不相关的尖峰时间,削弱作用必须强于增强作用。然而,当突触前神经元和突触后神经元强烈活动且无特定尖峰时间相关性时,这种权重归一化特性会排除赫布式增强作用。我们表明,马克拉姆等人[(1997年)《科学》275:213 - 215]数据中固有的非线性STDP能够保留权重归一化和赫布式可塑性的益处,因此能够解释基于尖峰时间相关性和平均发放率的学习。作为示例,我们考虑了比恩斯托克 - 库珀 - 蒙罗规则的移动阈值特性、通过改变短期突触抑制来发展方向选择性简单细胞以及轴突和树突延迟的联合适应。在低频情况下没有阈值非线性,方向选择性的发展在自然刺激环境中就不会稳定。没有突触不可靠性,轴突和树突延迟就不会有因果性发展。

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