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Tilt Aftereffects in a Self-Organizing Model of the Primary Visual Cortex

机译:主视觉皮层的自组织模型中的倾斜后效应

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摘要

RF-LISSOM, a self-organizing model of laterally connected orientation maps in the primary visual cortex, was used to study the psychological phenomenon known as the tilt aftereffect. The same self-organizing processes that are responsible for the long-term development of the map are shown to result in tilt aftereffects over short time scales in the adult. The model permits simultaneous observation of large numbers of neurons and connections, making it possible to relate high-level phenomena to low-level events, which is difficult to do experimentally. The results give detailed computational support for the long-standing conjecture that the direct tilt aftereffect arises from adaptive lateral interactions between feature detectors. They also make a new prediction that the indirect effect results from the normalization of synaptic efficacies during this process. The model thus provides a unified computational explanation of self-organization and both the direct and indirect tilt aftereffect in the primary visual cortex.
机译:RF-LISSOM是主要视觉皮层中横向连接的方向图的自组织模型,用于研究称为倾斜后效应的心理现象。结果表明,负责地图长期发展的相同自组织过程会导致成年人在短时间范围内产生倾斜后效应。该模型允许同时观察大量的神经元和连接,从而使将高水平现象与低水平事件相关联成为可能,而这在实验上是很难做到的。结果为长期的推测提供了详细的计算支持,即直接倾斜后效应来自特征检测器之间的自适应横向相互作用。他们还做出了一个新的预测,即间接作用是在此过程中突触效率正常化的结果。因此,该模型为主要视觉皮层中的自组织以及直接和间接倾斜后效应提供了统一的计算解释。

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