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Movement and memory function in biological neural networks

机译:生物神经网络中的运动和记忆功能

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Asymmetrical neural networks are shown in a biological neural network, the catfish retina. Several mechanisms have been proposed for the detection of motion in biological system. Hassenstein and Reichardt network (1956) and Barlow and Levick network (1965) of movements are similar to the asymmetrical network developed here. To make clear the difference among these asymmetrical networks, we applied nonlinear analysis developed by N. Wiener. Then, we can derive the /spl alpha/-equation of movement, which shows the direction of movement. During the movement, we also can derive the movement equation, which implies that the movement holds regardless of the parameter /spl alpha/. By analyzing the biological asymmetric neural networks, it is shown that the asymmetric networks are excellent in the ability of spatial information processing on the retinal level. The symmetric network was discussed by applying nonlinear analysis. In the symmetric neural network, it was suggested that memory function is needed to perceive the movement.
机译:非对称神经网络显示在生物神经网络cat鱼视网膜中。已经提出了几种机制来检测生物系统中的运动。运动的Hassenstein和Reichardt网络(1956)以及Barlow和Levick网络(1965)类似于此处开发的不对称网络。为了弄清楚这些不对称网络之间的差异,我们应用了N. Wiener开发的非线性分析。然后,我们可以导出运动的/ spl alpha /-等式,它显示了运动的方向。在运动过程中,我们还可以导出运动方程,这意味着无论参数/ spl alpha /如何,运动都将保持。通过对生物不对称神经网络的分析,可以看出,不对称网络在视网膜水平上具有出色的空间信息处理能力。通过应用非线性分析讨论了对称网络。在对称神经网络中,建议需要记忆功能来感知运动。

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