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Neural network model of on-off units in the fly visual system: simulations of dynamic behavior

机译:飞行视觉系统中开关单元的神经网络模型:动态行为模拟

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摘要

We analyze the dynamic properties of a neural network model for on-off spiking neurons recorded in the first optic chiasm of the fly visual system. The model consists of two parallel pathways and three sequential processing stages. The first stage models photoreceptors. At the second stage, the signal is segregated into on- and off-pathways. These pathways are proposed to correspond to two populations of amacrine cells. At the third stage, the on- and off-pathways converge to on-off neurons. Furthermore, according to the model, on-off neurons interact via recurrent connections. This stage is proposed to correspond to lamina L4 neurons. In response to luminance increments and decrements, the model exhibits a three-component response and suggests pathways for each of the components. When stimulated by a train of pulses, the model exhibits fast adaptation for. frequencies higher than about 5 Hz. Furthermore, adaptation to on- and off-pulses occurs independently. When the frequency of stimulation is reduced, the unit recovers rapidly from its adapted state. The temporal modulation transfer function has its peak around 7 Hz. The phase characteristics show a phase lead for low temporal frequencies changing to a phase lag for high frequencies. These model predictions are compared with data from Jansonius and van Hateren (1991). [References: 47]
机译:我们分析了在飞行视觉系统的第一个视神经束中记录的开关尖峰神经元的神经网络模型的动态特性。该模型由两个并行路径和三个顺序处理阶段组成。第一阶段模拟感光器。在第二阶段,信号被分为开通和关断路径。提出这些途径对应于两个无长突细胞群。在第三阶段,开和关路径会收敛到开-关神经元。此外,根据该模型,开关神经元通过循环连接相互作用。提议该阶段对应于层状L4神经元。响应亮度的增加和减少,该模型表现出三成分响应,并为每种成分提出了路径。当受到一系列脉冲刺激时,该模型表现出快速的适应性。频率高于约5 Hz。此外,对接通和断开脉冲的适应独立发生。当刺激的频率降低时,该装置从其适应状态迅速恢复。时间调制传递函数的峰值约为7 Hz。相位特性显示低时间频率的相位超前变为高频率的相位滞后。将这些模型预测与Jansonius和van Hateren(1991)的数据进行比较。 [参考:47]

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