Institut Curie, PSL Research University, INSERM U934, CNRS UMR3215, Paris, France.
Department of Neuroscience, Physiology & Pharmacology, University College London, London, WC1E 6BT, UK.
Nat Commun. 2019 Nov 29;10(1):5471. doi: 10.1038/s41467-019-13484-9.
Binocular stereopsis requires the convergence of visual information from corresponding points in visual space seen by two different lines of sight. This may be achieved by superposition of retinal input from each eye onto the same downstream neurons via ipsi- and contralaterally projecting optic nerve fibers. Zebrafish larvae can perceive binocular cues during prey hunting but have exclusively contralateral retinotectal projections. Here we report brain activity in the tectal neuropil ipsilateral to the visually stimulated eye, despite the absence of ipsilateral retinotectal projections. This activity colocalizes with arbors of commissural neurons, termed intertectal neurons (ITNs), that connect the tectal hemispheres. ITNs are GABAergic, establish tectal synapses bilaterally and respond to small moving stimuli. ITN-ablation impairs capture swim initiation when prey is positioned in the binocular strike zone. We propose an intertectal circuit that controls execution of the prey-capture motor program following binocular localization of prey, without requiring ipsilateral retinotectal projections.
双眼立体视需要将来自两个不同视线的视觉空间中对应点的视觉信息汇聚。这可以通过将来自每只眼睛的视网膜输入叠加到通过同侧和对侧投射的视神经纤维上的相同下游神经元上来实现。斑马鱼幼虫在捕食猎物时可以感知双眼线索,但仅有对侧视网膜-顶盖投射。在这里,我们报告了在视觉刺激眼同侧的顶盖神经丛中的脑活动,尽管没有同侧视网膜-顶盖投射。这种活动与被称为顶盖间神经元(ITN)的连接两个顶盖半球的交叉神经元的树突共定位。ITN 是 GABA 能的,在双侧建立顶盖突触,并对小的运动刺激作出反应。ITN 消融会破坏当猎物处于双眼攻击区时的捕捉游泳启动。我们提出了一个顶盖间回路,它可以在猎物的双眼定位后控制猎物捕捉运动程序的执行,而不需要同侧视网膜-顶盖投射。