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Comprehensive Characterization of the Major Presynaptic Elements to the Drosophila OFF Motion Detector

机译:果蝇OFF运动检测器的主要突触前元素的全面表征。

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Estimating motion is a fundamental task for the visual system of sighted animals. In Drosophila, direction-selective T4 and T5 cells respond to moving brightness increments (ON) and decrements (OFF), respectively. Current algorithmic models of the circuit are based on the interaction of two differentially filtered signals. However, electron microscopy studies have shown that T5 cells receive their major input from four classes of neurons: Tm1, Tm2, Tm4, and Tm9. Using two-photon calcium imaging, we demonstrate that T5 is the first direction-selective stage within the OFF pathway. The four cells provide an array of spatiotemporal filters to T5. Silencing their synaptic output in various combinations, we find that all input elements are involved in OFF motion detection to varying degrees. Our comprehensive survey challenges the simplified view of how neural systems compute the direction of motion and suggests that an intricate interplay of many signals results in direction selectivity.
机译:估计运动是视觉动物视觉系统的基本任务。在果蝇中,方向选择的T4和T5单元分别响应移动的亮度增量(ON)和减量(OFF)。电路的当前算法模型基于两个差分滤波信号的相互作用。但是,电子显微镜研究表明T5细胞从四类神经元(Tm1,Tm2,Tm4和Tm9)获得主要输入。使用双光子钙成像,我们证明T5是OFF通路内的第一个方向选择阶段。这四个单元为T5提供了一系列时空滤波器。沉默各种组合形式的突触输出,我们发现所有输入元件都在不同程度上参与了OFF运动检测。我们的综合调查挑战了神经系统如何计算运动方向的简化视图,并建议许多信号的复杂相互作用会导致方向选择性。

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