首页> 外文会议>Annual Computational Neuroscience Meeting(CNS'02); 20020721-20020725; Chicago,IL; US >Self-organization of spatiotemporal receptive fields and laterally connected direction and orientation maps
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Self-organization of spatiotemporal receptive fields and laterally connected direction and orientation maps

机译:时空感受域和横向连接的方向和方向图的自组织

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Studies of orientation maps in primary visual cortex (V1) suggest that lateral connections mediate competition and cooperation between orientation-selective units, but their role in motion perception has not been established. Using a self-organizing model of V1 with moving oriented patterns, we show that (1) afferent weights of each neuron organize into Gabor-like spatiotemporal receptive fields with ON and OFF lobes, (2) these receptive fields form realistic joint direction and orientation maps, and (3) lateral connections develop between patches with similar orientation and direction preferences. These results suggest that a single self-organizing system may underlie the development of orientation selectivity, direction selectivity, and lateral connectivity.
机译:对初级视觉皮层(V1)中的方向图的研究表明,侧向连接介导了方向选择单元之间的竞争和合作,但是尚未确定它们在运动感知中的作用。使用具有移动定向模式的V1的自组织模型,我们表明(1)每个神经元的传入权重组织成具有ON和OFF瓣的Gabor状时空感受野,(2)这些感受野形成了逼真的关节方向和定向图,以及(3)在方向和方向相似的贴片之间形成横向连接。这些结果表明,单个自组织系统可能是定向选择性,方向选择性和横向连接性发展的基础。

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