Neural Circuit Laboratories, Friedrich Miescher Institute for Biomedical Research, 4058 Basel, Switzerland.
Neuron. 2013 Sep 18;79(6):1078-85. doi: 10.1016/j.neuron.2013.08.005. Epub 2013 Aug 22.
Inferring the direction of image motion is a fundamental component of visual computation and essential for visually guided behavior. In the retina, the direction of image motion is computed in four cardinal directions, but it is not known at which circuit location along the flow of visual information the cardinal direction selectivity first appears. We recorded the concerted activity of the neuronal circuit elements of single direction-selective (DS) retinal ganglion cells at subcellular resolution by combining GCaMP3-functionalized transsynaptic viral tracing and two-photon imaging. While the visually evoked activity of the dendritic segments of the DS cells were direction selective, direction-selective activity was absent in the axon terminals of bipolar cells. Furthermore, the glutamate input to DS cells, recorded using a genetically encoded glutamate sensor, also lacked direction selectivity. Therefore, the first stage in which extraction of a cardinal motion direction occurs is the dendrites of DS cells.
推断图像运动的方向是视觉计算的基本组成部分,对于视觉引导的行为至关重要。在视网膜中,图像运动的方向以四个基本方向计算,但尚不清楚在视觉信息流的哪个电路位置,基本方向选择性首先出现。我们通过结合 GCaMP3 功能化的转导病毒示踪和双光子成像,以亚细胞分辨率记录单个方向选择性(DS)视网膜神经节细胞的神经元回路元件的协同活动。虽然 DS 细胞的树突段的视觉诱发活动具有方向选择性,但双极细胞的轴突末梢则没有方向选择性活动。此外,使用遗传编码的谷氨酸传感器记录的 DS 细胞的谷氨酸输入也缺乏方向选择性。因此,提取主要运动方向的第一阶段是 DS 细胞的树突。