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Two identified looming detectors in the locust: ubiquitous lateral connections among their inputs contribute to selective responses to looming objects

机译:蝗虫中有两个已识别的迫在眉睫的探测器:输入之间无处不在的横向连接有助于对隐身物体的选择性响应

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摘要

In locusts, two lobula giant movement detector neurons (LGMDs) act as looming object detectors. Their reproducible responses to looming and their ethological significance makes them models for single neuron computation. But there is no comprehensive picture of the neurons that connect directly to each LGMD. We used high-through-put serial block-face scanning-electron-microscopy to reconstruct the network of input-synapses onto the LGMDs over spatial scales ranging from single synapses and small circuits, up to dendritic branches and total excitatory input. Reconstructions reveal that many trans-medullary-afferents (TmAs) connect the eye with each LGMD, one TmA per facet per LGMD. But when a TmA synapses with an LGMD it also connects laterally with another TmA. These inter-TmA synapses are always reciprocal. Total excitatory input to the LGMD 1 and 2 comes from 131,000 and 186,000 synapses reaching densities of 3.1 and 2.6 synapses per μm2 respectively. We explored the computational consequences of reciprocal synapses between each TmA and 6 others from neighbouring columns. Since any lateral interactions between LGMD inputs have always been inhibitory we may assume these reciprocal lateral connections are most likely inhibitory. Such reciprocal inhibitory synapses increased the LGMD’s selectivity for looming over passing objects, particularly at the beginning of object approach.
机译:在蝗虫中,两个小叶巨人运动检测器神经元(LGMD)充当隐约物体检测器。它们对迫在眉睫的可再现响应以及其伦理学意义使它们成为单个神经元计算的模型。但是,没有直接连接到每个LGMD的神经元的全面描述。我们使用了高通量串行块面扫描电子显微镜技术,在从单个突触和小电路到树突分支和总兴奋性输入的空间尺度上,将输入突触网络重构到LGMD上。重建表明,许多跨髓神经(TmAs)将眼睛与每个LGMD连接,每个LGMD每个面一个TmA。但是,当TmA与LGMD突触时,它也与另一个TmA横向连接。这些TmA间突触始终是对等的。 LGMD 1和LGMD 2的总兴奋性输入分别来自131,000和186,000个突触,分别达到每μm 2 3.1和2.6突触的密度。我们探索了每个TmA与相邻列中的其他6个TmA之间的相互突触的计算结果。由于LGMD输入之间的任何横向交互一直都是抑制性的,因此我们可以假定这些相互的横向连接最有可能是抑制性的。这种相互抑制的突触增加了LGMD对若隐若现的物体的选择性,尤其是在物体接近之初。

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