Mehta M R, Barnes C A, McNaughton B L
ARL Division of Neural Systems, Memory and Aging, Department of Psychology, University of Arizona, Tucson, AZ 85724, USA.
Proc Natl Acad Sci U S A. 1997 Aug 5;94(16):8918-21. doi: 10.1073/pnas.94.16.8918.
Theories of sequence learning based on temporally asymmetric, Hebbian long-term potentiation predict that during route learning the spatial firing distributions of hippocampal neurons should enlarge in a direction opposite to the animal's movement. On a route AB, increased synaptic drive from cells representing A would cause cells representing B to fire earlier and more robustly. These effects appeared within a few laps in rats running on closed tracks. This provides indirect evidence for Hebbian synaptic plasticity and a functional explanation for why place cells become directionally selective during route following, namely, to preserve the synaptic asymmetry necessary to encode the sequence direction.
基于时间不对称的赫布型长时程增强的序列学习理论预测,在路径学习过程中,海马神经元的空间放电分布应在与动物运动方向相反的方向上扩大。在路径AB上,来自代表A的细胞的突触驱动增加会导致代表B的细胞更早、更强烈地放电。这些效应在大鼠在封闭轨道上奔跑的几圈内就出现了。这为赫布型突触可塑性提供了间接证据,并对位置细胞在跟随路径时为何变得具有方向选择性提供了功能解释,即保持编码序列方向所需的突触不对称性。