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Modular Use of Peripheral Input Channels Tunes Motion-Detecting Circuitry

机译:外围输入通道的模块化使用可调节运动检测电路

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摘要

In the visual system, peripheral processing circuits are often tuned to specific stimulus features. How this selectivity arises and how these circuits are organized to inform specific visual behaviors is incompletely understood. Using forward genetics and quantitative behavioral studies, we uncover an input channel to motion detecting circuitry in Drosophila. The second-order neuron L3 acts combinatorially with two previously known inputs, L1 and L2, to inform circuits specialized to detect moving light and dark edges. Invivo calcium imaging of L3, combined with neuronal silencing experiments, suggests a neural mechanism to achieve selectivity for moving dark edges. We further demonstrate that different innate behaviors, turning and forward movement, can be independently modulated by visual motion. These two behaviors make use of different combinations of input channels. Such modular use of input channels to achieve feature extraction and behavioral specialization likely represents a general principle in sensory systems.
机译:在视觉系统中,外围处理电路通常被调整为特定的刺激特征。这种选择性如何产生以及这些电路如何组织以告知特定的视觉行为尚不完全清楚。使用正向遗传学和定量行为研究,我们发现了果蝇运动检测电路的输入通道。二阶神经元L3与两个先前已知的输入L1和L2组合起作用,以通知专用于检测移动的明暗边缘的电路。 L3的体内钙成像与神经元沉默实验相结合,提示了一种实现移动深色边缘选择性的神经机制。我们进一步证明,不同的先天行为,转身和向前运动,可以通过视觉运动独立地调节。这两种行为利用了输入通道的不同组合。输入通道的这种模块化使用以实现特征提取和行为专门化可能代表了传感系统的一般原理。

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