Fenton A A, Muller R U
Department of Physiology, State University of New York, 450 Clarkson Avenue, Brooklyn, NY 11203, USA.
Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):3182-7. doi: 10.1073/pnas.95.6.3182.
The idea that the rat hippocampus stores a map of space is based on the existence of "place cells" that show "location-specific" firing. The discharge of place cells is confined with remarkable precision to a cell-specific part of the environment called the cell's "firing field." We demonstrate here that firing is not nearly as reliable in the time domain as in the positional domain. Discharge during passes through the firing field was compared with a model with Poisson variance of the location-specific firing determined by the time-averaged positional firing rate distribution. Place cells characteristically fire too little or too much compared with expectations from the random model. This fundamental property of place cells is referred to as "excess firing variance" and has three main implications: (i) Place cell discharge is not only driven by the summation of many small, asynchronous excitatory synaptic inputs. (ii) Place cell discharge may encode a signal in addition to the current head location. (iii) The excess firing variance helps explain why the errors in computing the rat's position from the simultaneous activity of many place cells are large.
大鼠海马体存储空间地图这一观点基于“位置细胞”的存在,这些细胞表现出“位置特异性”放电。位置细胞的放电被精确地限制在环境中特定于细胞的部分,即细胞的“放电野”。我们在此证明,放电在时域中的可靠性远不如在位置域中。将穿过放电野时的放电与一个模型进行比较,该模型具有由时间平均位置放电率分布确定的位置特异性放电的泊松方差。与随机模型的预期相比,位置细胞的放电通常过少或过多。位置细胞的这一基本特性被称为“过度放电方差”,它有三个主要含义:(i)位置细胞放电不仅由许多小的、异步兴奋性突触输入的总和驱动。(ii)位置细胞放电除了当前头部位置外,可能还编码一个信号。(iii)过度放电方差有助于解释为什么从许多位置细胞的同步活动计算大鼠位置时的误差很大。