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Visualizing retinotopic half-wave rectified input to the motion detection circuitry of Drosophila.

机译:可视化视黄醛半波整流输入到果蝇的运动检测电路。

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摘要

In the visual system of Drosophila, photoreceptors R1-R6 relay achromatic brightness information to five parallel pathways. Two of them, the lamina monopolar cells L1 and L2, represent the major input lines to the motion detection circuitry. We devised a new method for optical recording of visually evoked changes in intracellular Ca2+ in neurons using targeted expression of a genetically encoded Ca2+ indicator. Ca2+ in single terminals of L2 neurons in the medulla carried no information about the direction of motion. However, we found that brightness decrements (light-OFF) induced a strong increase in intracellular Ca2+ but brightness increments (light-ON) induced only small changes, suggesting that half-wave rectification of the input signal occurs. Thus, L2 predominantly transmits brightness decrements to downstream circuits that then compute the direction of image motion.
机译:在果蝇的视觉系统中,感光器R1-R6将消色差亮度信息中继到五个平行路径。它们中的两个,即薄片单极细胞L1和L2,代表了运动检测电路的主要输入线。我们设计了一种新方法,用于使用遗传编码的Ca2 +指示剂的靶向表达来光学记录神经元中细胞内Ca2 +的视觉诱发变化。髓质中L2神经元的单个末端中的Ca2 +没有携带有关运动方向的信息。但是,我们发现亮度降低(关闭)会引起细胞内Ca2 +的强烈增加,而亮度增加(打开)会导致细胞内Ca2 +的微小变化,表明输入信号发生了半波整流。因此,L2主要将亮度减量传输到下游电路,然后再计算图像运动的方向。

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