Mehta M R, Quirk M C, Wilson M A
Center for Learning and Memory, RIKEN-MIT Neuroscience Research Center, Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 02139, USA.
Neuron. 2000 Mar;25(3):707-15. doi: 10.1016/s0896-6273(00)81072-7.
We propose a novel parameter, namely, the skewness, or asymmetry, of the shape of a receptive field to characterize two properties of hippocampal place fields. First, a majority of hippocampal receptive fields on linear tracks are negatively skewed, such that during a single pass the firing rate is low as the rat enters the field but high as it exits. Second, while the place fields are symmetric at the beginning of a session, they become highly asymmetric with experience. Further experiments suggest that these results are likely to arise due to synaptic plasticity during behavior. Using a purely feed forward neural network model, we show that following repeated directional activation, NMDA-dependent long-term potentiation/long-term depotentiation (LTP/LTD) could result in an experience-dependent asymmetrization of receptive fields.
我们提出了一个新的参数,即感受野形状的偏度或不对称性,以表征海马体位置野的两个特性。首先,线性轨道上的大多数海马体感受野呈负偏态,即大鼠单次通过时,进入感受野时放电率较低,而离开时放电率较高。其次,虽然位置野在实验开始时是对称的,但随着经验的积累,它们会变得高度不对称。进一步的实验表明,这些结果可能是由于行为过程中的突触可塑性导致的。使用一个纯前馈神经网络模型,我们表明,在重复定向激活后,NMDA 依赖的长时程增强/长时程抑制(LTP/LTD)可能导致感受野的经验依赖性不对称化。