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简单细胞时空感受野的发育:II. 模拟与分析

Development of spatiotemporal receptive fields of simple cells: II. Simulation and analysis.

作者信息

Wimbauer S, Wenisch O G, van Hemmen J L, Miller K D

机构信息

Physik Department, Technische Universität München, Garching, Germany.

出版信息

Biol Cybern. 1997 Dec;77(6):463-77. doi: 10.1007/s004220050406.

Abstract

In part I of this article a correlation based model for the developmental process of spatiotemporal receptive fields has been introduced. In this model the development is described as an activity-dependent competition between four types of input from the lateral geniculate nucleus onto a cortical cell, viz. non-lagged ON and OFF and lagged ON and OFF inputs. In the present paper simulation results and a first analysis are presented for this model. We study the developmental process both before and after eye-opening and compare the results with experimental data from reverse correlation measurements. The outcome of the developmental process is determined mainly by the spatial and the temporal correlations between the different inputs. In particular, if the mean correlation between non-lagged and lagged inputs is weak, receptive fields with a widely varying degree of direction selectivity emerge. However, spatiotemporal receptive fields may show rotation of their preferred orientation as a function of response delay. Even if the mean correlation between two types of temporal input is not weak, direction-selective receptive fields may emerge because of an intracortical interaction between different cortical maps. In an environment of moving lines or gratings, direction-selective receptive fields develop only if the distribution of the directions of motion presented during development shows some anisotropy. In this case, a continuous map of preferred direction is also shown to develop.

摘要

在本文的第一部分,已经介绍了一种基于相关性的时空感受野发育过程模型。在这个模型中,发育过程被描述为外侧膝状体核到皮层细胞的四种类型输入之间的活动依赖性竞争,即非滞后的ON和OFF以及滞后的ON和OFF输入。在本文中,给出了该模型的模拟结果和初步分析。我们研究了睁眼前后的发育过程,并将结果与来自反向相关测量的实验数据进行比较。发育过程的结果主要由不同输入之间的空间和时间相关性决定。特别是,如果非滞后和滞后输入之间的平均相关性较弱,就会出现具有广泛不同程度方向选择性的感受野。然而,时空感受野可能会随着响应延迟而显示其偏好方向的旋转。即使两种类型的时间输入之间的平均相关性不强,由于不同皮层图谱之间的皮层内相互作用,也可能出现方向选择性感受野。在移动线条或光栅的环境中,只有当发育期间呈现的运动方向分布显示出某种各向异性时,方向选择性感受野才会发育。在这种情况下,还显示出偏好方向的连续图谱会发育。

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