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Topographic Map Formation by Silicon Growth Cones

机译:硅生长锥体的地形地图形成

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We describe a self-configuring neuromorphic chip that uses a model of activity-dependent axon remodeling to automatically wire topographic maps based solely on input correlations. Axons are guided by growth cones, which are modeled in analog VLSI for the first time. Growth cones migrate up neurotropin gradients, which are represented by charge diffusing in transistor channels. Virtual axons move by rerouting address-events. We refined an initially gross topographic projection by simulating retinal wave input.
机译:我们描述了一种自配置的神经形态芯片,其使用活动依赖性轴突模型进行重塑,以仅基于输入相关性地自动地形图。轴突由生长锥引导,其首次在模拟VLSI中进行建模。生长锥迁移到神经促蛋白梯度,其由晶体管通道的电荷表示。虚拟轴突通过重新路由地址事件移动。通过模拟视网膜输入,我们通过模拟视网膜输入来精制最初的总形图投影。

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