Precise Subcellular Input Retinotopy and Its Computational Consequences in an Identified Visual Interneuron

被引:37
作者
Peron, Simon P. [1 ,2 ]
Jones, Peter W. [2 ]
Gabbiani, Fabrizio [2 ,3 ]
机构
[1] Howard Hughes Med Inst, Ashburn, VA 20147 USA
[2] Baylor Coll Med, Div Neurosci, Houston, TX 77030 USA
[3] Rice Univ, Dept Computat & Appl Math, Houston, TX 77005 USA
关键词
RECEPTIVE-FIELD PROPERTIES; SPIKE-FREQUENCY ADAPTATION; DIRECTION SELECTIVITY; PYRAMIDAL NEURONS; DENDRITIC INTEGRATION; GAIN-CONTROL; NEURAL MAP; WIDE-FIELD; MECHANISMS; SYSTEM;
D O I
10.1016/j.neuron.2009.09.010
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The Lobula Giant Movement Detector (LGMD) is a higher-order visual interneuron of Orthopteran insects that responds preferentially to objects approaching on a collision course. It receives excitatory input from an entire visual hemifield that anatomical evidence suggests is retinotopic, We show that this excitatory projection activates calcium-permeable nicotinic acetylcholine receptors. In vivo calcium imaging reveals that the excitatory projection preserves retinotopy down to the level of a single ommatidium. Examining the impact of retinotopy on the LGMD's computational properties, we show that sublinear synaptic summation can explain orientation preference in this cell. Exploring retinotopy's impact on directional selectivity leads us to infer that the excitatory input to the LGMD is intrinsically directionally selective. Our results show that precise retinotopy has implications for the dendritic integration of visual information in a single neuron.
引用
收藏
页码:830 / 842
页数:13
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