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自由观看过程中外侧膝状体反应的建模:微小眼动在皮层方向选择性优化中的可能作用。

Modeling LGN responses during free-viewing: a possible role of microscopic eye movements in the refinement of cortical orientation selectivity.

作者信息

Rucci M, Edelman G M, Wray J

机构信息

Department of Cognitive and Neural Systems, Boston University, Boston, Massachusetts 02215, USA.

出版信息

J Neurosci. 2000 Jun 15;20(12):4708-20. doi: 10.1523/JNEUROSCI.20-12-04708.2000.

Abstract

Neural activity appears to be essential for the normal development of the orientation-selective responses of cortical cells. It has been proposed that the correlated activity of LGN cells is a crucial component for shaping the receptive fields of cortical simple cells into adjacent, oriented subregions alternately receiving ON- and OFF-center excitatory geniculate inputs. After eye opening, the spatiotemporal structure of neural activity in the early stages of the visual pathway depends not only on the characteristics of the environment, but also on the way the environment is scanned. In this study, we use computational modeling to investigate how eye movements might affect the refinement of orientation tuning in the presence of a Hebbian scheme of synaptic plasticity. Visual input consisting of natural scenes scanned by varying types of eye movements was used to activate a spatiotemporal model of LGN cells. In the presence of different types of movement, significantly different patterns of activity were found in the LGN. Specific patterns of correlation required for the development of segregated cortical receptive field subregions were observed in the case of micromovements, but were not seen in the case of saccades or static presentation of natural visual input. These results suggest an important role for the eye movements occurring during fixation in the refinement of orientation selectivity.

摘要

神经活动似乎对于皮层细胞方向选择性反应的正常发育至关重要。有人提出,外侧膝状体(LGN)细胞的相关活动是将皮层简单细胞的感受野塑造成相邻的、方向各异的子区域的关键组成部分,这些子区域交替接收中心开和中心关的兴奋性膝状体输入。睁眼后,视觉通路早期阶段神经活动的时空结构不仅取决于环境特征,还取决于扫描环境的方式。在本研究中,我们使用计算模型来研究在存在赫布型突触可塑性机制的情况下,眼球运动如何影响方向调谐的精细化。由通过不同类型眼球运动扫描的自然场景组成的视觉输入被用于激活LGN细胞的时空模型。在存在不同类型运动的情况下,在LGN中发现了显著不同的活动模式。在微运动的情况下,观察到了分离的皮层感受野子区域发育所需的特定相关模式,但在扫视或自然视觉输入的静态呈现情况下未观察到。这些结果表明,注视期间发生的眼球运动在方向选择性的精细化中起着重要作用。

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