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Fine and distributed subcellular retinotopy of excitatory inputs to the dendritic tree of a collision-detecting neuron

机译:碰撞检测神经元树突树的兴奋性输入的精细和分布式亚细胞视网膜色素上皮

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Zhu Y, Gabbiani F. Fine and distributed subcellular retinotopy of excitatory inputs to the dendritic tree of a collision-detecting neuron. J Neurophysiol 115: 3101-3112, 2016. First published March 23, 2016; doi:10.1152/jn.00044.2016.—Individual neurons in several sensory systems receive synaptic inputs organized according to subcellular topographic maps, yet the fine structure of this topographic organization and its relation to dendritic morphology have not been studied in detail. Subcellular topography is expected to play a role in dendritic integration, particularly when dendrites are extended and active. The lobula giant movement detector (LGMD) neuron in the locust visual system is known to receive topographic excitatory inputs on part of its dendritic tree. The LGMD responds preferentially to
机译:Zhu Y,Gabbiani F.对碰撞检测神经元树突树的兴奋性输入的精细和分布式亚细胞视网膜色素上皮。 J Neurophysiol 115:3101-3112,2016年。2016年3月23日首次出版; doi:10.1152 / jn.00044.2016。—几个感觉系统中的单个神经元接收根据亚细胞地形图组织的突触输入,但是尚未详细研究此地形组织的精细结构及其与树突形态的关系。预计亚细胞形貌将在树突整合中发挥作用,尤其是当树突扩展且活跃时。已知蝗虫视觉系统中的小叶巨人运动检测器(LGMD)神经元会在其树突树的一部分上接收地形激发性输入。 LGMD优先回应

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