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Archerfish 视神经顶盖中的编码方案。

Coding Schemes in the Archerfish Optic Tectum.

机构信息

Life Sciences Department and Zlotowski Center for Neuroscience, Ben Gurion University of the Negev, Beersheba, Israel.

Department of Neurobiology, Duke University, Durham, NC, United States.

出版信息

Front Neural Circuits. 2018 Mar 6;12:18. doi: 10.3389/fncir.2018.00018. eCollection 2018.

Abstract

Many studies have yielded valuable knowledge on the early visual system but it is biased since the studies have focused on terrestrial mammals alone. Here, to better account for visual systems in different environments and animal classes, we studied the structure of early visual processing in the archerfish which harnesses its extreme visual ability to hunt by shooting water jets at prey hanging on vegetation above the water. Thus, the archerfish provides a unique opportunity to study visual processing in a vertebrate which is an expert vision-guided predator with a very different brain structure than mammals. The receptive field structures in the archerfish (both sexes) optic tectum, the main visual processing region in the fish brain, were measured and linear non-linear cascades were used to analyze their properties. The findings indicate that the spatial receptive field structures lie on a continuum between circular and elliptical shapes. In addition, the cells' functional properties display a richness of response characteristics, since many cells could be captured by more than a single linear filter. Finally, the non-linear response functions that link linear filters and neuronal responses were found to be similar to the non-linear functions of models that describe terrestrial mammalian single cell activity. Overall our results help to better understand the early visual processing system across vertebrates.

摘要

许多研究已经产生了关于早期视觉系统的有价值的知识,但这些研究都是有偏见的,因为它们只关注陆地哺乳动物。在这里,为了更好地解释不同环境和动物类群的视觉系统,我们研究了射水鱼的早期视觉处理结构,射水鱼利用其极端的视觉能力,通过向悬挂在水面上方植被上的猎物喷射水射流来捕猎。因此,射水鱼为研究视觉处理提供了一个独特的机会,这种视觉处理在脊椎动物中是一种专家级的视觉导向捕食者,其大脑结构与哺乳动物有很大的不同。我们测量了射水鱼(雌雄两性)视顶盖的感受野结构,视顶盖是鱼类大脑中的主要视觉处理区域,并使用线性-非线性级联来分析其特性。研究结果表明,空间感受野结构位于圆形和椭圆形之间的连续体上。此外,细胞的功能特性显示出丰富的反应特征,因为许多细胞可以被多个线性滤波器捕获。最后,发现将线性滤波器和神经元反应联系起来的非线性响应函数与描述陆地哺乳动物单细胞活动的模型的非线性函数相似。总的来说,我们的研究结果有助于更好地理解跨脊椎动物的早期视觉处理系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b398/5845554/14515c7d7d7e/fncir-12-00018-g0001.jpg

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