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通过突触易化实现相位进动。

Phase precession through synaptic facilitation.

作者信息

Thurley Kay, Leibold Christian, Gundlfinger Anja, Schmitz Dietmar, Kempter Richard

机构信息

Institute for Theoretical Biology, Department of Biology, Humboldt-Universität zu Berlin, 10115 Berlin, Germany.

出版信息

Neural Comput. 2008 May;20(5):1285-324. doi: 10.1162/neco.2008.07-06-292.

Abstract

Phase precession is a relational code that is thought to be important for episodic-like memory, for instance, the learning of a sequence of places. In the hippocampus, places are encoded through bursting activity of so-called place cells. The spikes in such a burst exhibit a precession of their firing phases relative to field potential theta oscillations (4-12 Hz); the theta phase of action potentials in successive theta cycles progressively decreases toward earlier phases. The mechanisms underlying the generation of phase precession are, however, unknown. In this letter, we show through mathematical analysis and numerical simulations that synaptic facilitation in combination with membrane potential oscillations of a neuron gives rise to phase precession. This biologically plausible model reproduces experimentally observed features of phase precession, such as (1) the progressive decrease of spike phases, (2) the nonlinear and often also bimodal relation between spike phases and the animal's place, (3) the range of phase precession being smaller than one theta cycle, and (4) the dependence of phase jitter on the animal's location within the place field. The model suggests that the peculiar features of the hippocampal mossy fiber synapse, such as its large efficacy, long-lasting and strong facilitation, and its phase-locked activation, are essential for phase precession in the CA3 region of the hippocampus.

摘要

相位进动是一种关系编码,被认为对情景样记忆很重要,例如对一系列地点的学习。在海马体中,地点是通过所谓的位置细胞的爆发性活动来编码的。这种爆发中的尖峰相对于场电位θ振荡(4-12赫兹)表现出其放电相位的进动;在连续的θ周期中动作电位的θ相位逐渐朝着更早的相位减小。然而,相位进动产生的机制尚不清楚。在这封信中,我们通过数学分析和数值模拟表明,神经元的突触易化与膜电位振荡相结合会导致相位进动。这个生物学上合理的模型再现了实验观察到的相位进动特征,例如:(1)尖峰相位的逐渐减小;(2)尖峰相位与动物位置之间的非线性且通常也是双峰的关系;(3)相位进动的范围小于一个θ周期;(4)相位抖动对动物在位置场内位置的依赖性。该模型表明,海马体苔藓纤维突触的特殊特征,如其高效能、持久且强烈的易化作用以及其锁相激活,对于海马体CA3区域的相位进动至关重要。

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