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Reciprocal Inhibitory Connections Within a Neural Network for Rotational Optic-Flow Processing

机译:旋转光学流处理的神经网络内的相互抑制连接

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摘要

Neurons in the visual system of the blowfly have large receptive fields that are selective for specific optic flow fields. Here, we studied the neural mechanisms underlying flow–field selectivity in proximal Vertical System (VS)-cells, a particular subset of tangential cells in the fly. These cells have local preferred directions that are distributed such as to match the flow field occurring during a rotation of the fly. However, the neural circuitry leading to this selectivity is not fully understood. Through dual intracellular recordings from proximal VS cells and other tangential cells, we characterized the specific wiring between VS cells themselves and between proximal VS cells and horizontal sensitive tangential cells. We discovered a spiking neuron (Vi) involved in this circuitry that has not been described before. This neuron turned out to be connected to proximal VS cells via gap junctions and, in addition, it was found to be inhibitory onto VS1.
机译:蝇类视觉系统中的神经元具有较大的感受野,对特定的光学流场具有选择性。在这里,我们研究了近端垂直系统(VS)细胞(飞行中切线细胞的特定子集)的流场选择性的神经机制。这些单元具有局部优选方向,该局部优选方向被分布为匹配在飞行过程中发生的流场。但是,导致这种选择性的神经回路尚未完全被理解。通过从近端VS细胞和其他切向细胞的双重细胞内记录,我们表征了VS细胞自身之间以及近端VS细胞与水平敏感切向细胞之间的特异性连接。我们发现了此电路中涉及的突触神经元(Vi),以前没有描述过。结果证明该神经元通过间隙连接与近端VS细胞相连,此外,还发现它对VS1具有抑制作用。

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