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Biologically Plausible Neural Circuits for Realization of Maximum Operations

机译:用于实现最大操作的生物可信神经电路

摘要

Object recognition in the visual cortex is based on a hierarchical architecture, in which specialized brain regions along the ventral pathway extract object features of increasing levels of complexity, accompanied by greater invariance in stimulus size, position, and orientation. Recent theoretical studies postulate a non-linear pooling function, such as the maximum (MAX) operation could be fundamental in achieving such invariance. In this paper, we are concerned with neurally plausible mechanisms that may be involved in realizing the MAX operation. Four canonical circuits are proposed, each based on neural mechanisms that have been previously discussed in the context of cortical processing. Through simulations and mathematical analysis, we examine the relative performance and robustness of these mechanisms. We derive experimentally verifiable predictions for each circuit and discuss their respective physiological considerations.
机译:视觉皮层中的对象识别基于分层体系结构,其中腹侧通路的专门大脑区域提取复杂程度不断提高的对象特征,同时伴随着刺激大小,位置和方向的更大不变性。最近的理论研究提出了非线性合并函数,例如最大(MAX)操作可能是实现这种不变性的基础。在本文中,我们关注可能与实现MAX操作有关的神经机制。提出了四个规范电路,每个规范电路都基于先前在皮层处理中讨论过的神经机制。通过模拟和数学分析,我们检查了这些机制的相对性能和鲁棒性。我们得出每个电路的实验可验证的预测,并讨论它们各自的生理考虑因素。

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