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Silicon superior colliculus for the integration of visual and auditory information with adaptive axon connection

机译:硅高级硅胶,用于通过自适应轴突连接整合视觉和听觉信息

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Visual and auditory map alignment in the superior colliculus (SC) of the barn owl is important for its accurate localization of prey. The visual map, and hence the alignment, may be purposefully disturbed in a juvenile barn owl by fitting it with ocular prisms, and it is found that it can adapt its auditory map to this mismatch after several weeks training. In our previous SC model, the axon growing process is instructed by an inhibitory network, the strength of which is adjusted using the neural structures involved in spatial localization. Based on this model, a mixed signal integrated circuit of the SC has been designed, and simulation results are consistent with those found by biological experiment. This new model makes possible artificial networks capable of eliminating the disparity between the visual and auditory maps.
机译:仓owl的上丘(SC)中的视觉和听觉图对齐方式对于精确定位猎物很重要。通过在幼年谷仓猫头鹰上安装眼棱镜,可以有意地扰乱视觉图,从而改变其对齐方式,并且发现经过数周的训练,它可以使听觉图适应这种失配。在我们以前的SC模型中,轴突的生长过程是由抑制性网络指示的,抑制性网络的强度是通过参与空间定位的神经结构来调节的。基于该模型,设计了SC的混合信号集成电路,仿真结果与生物学实验相吻合。这种新模型使人工网络能够消除视觉地图和听觉地图之间的差异成为可能。

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