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视网膜-中脑-圆核通路中广域神经元的运动处理

Motion processing with wide-field neurons in the retino-tecto-rotundal pathway.

作者信息

Dellen Babette, Wessel Ralf, Clark John W, Wörgötter Florentin

机构信息

Bernstein Center for Computational Neuroscience, Max-Planck-Institute for Dynamics and Self-Organization, Bunsenstrasse 10, 37073 Göttingen, Germany.

出版信息

J Comput Neurosci. 2010 Feb;28(1):47-64. doi: 10.1007/s10827-009-0186-y. Epub 2009 Oct 1.

Abstract

The retino-tecto-rotundal pathway is the main visual pathway in non-mammalian vertebrates and has been found to be highly involved in visual processing. Despite the extensive receptive fields of tectal and rotundal wide-field neurons, pattern discrimination tasks suggest a system with high spatial resolution. In this paper, we address the problem of how global processing performed by motion-sensitive wide-field neurons can be brought into agreement with the concept of a local analysis of visual stimuli. As a solution to this problem, we propose a firing-rate model of the retino-tecto-rotundal pathway which describes how spatiotemporal information can be organized and retained by tectal and rotundal wide-field neurons while processing Fourier-based motion in absence of periodic receptive-field structures. The model incorporates anatomical and electrophysiological experimental data on tectal and rotundal neurons, and the basic response characteristics of tectal and rotundal neurons to moving stimuli are captured by the model cells. We show that local velocity estimates may be derived from rotundal-cell responses via superposition in a subsequent processing step. Experimentally testable predictions which are both specific and characteristic to the model are provided. Thus, a conclusive explanation can be given of how the retino-tecto-rotundal pathway enables the animal to detect and localize moving objects or to estimate its self-motion parameters.

摘要

视网膜-视顶盖-圆核通路是非哺乳类脊椎动物的主要视觉通路,并且已发现其高度参与视觉处理。尽管视顶盖和圆核广域神经元具有广泛的感受野,但模式辨别任务表明该系统具有高空间分辨率。在本文中,我们探讨了由运动敏感广域神经元执行的全局处理如何能与视觉刺激的局部分析概念相一致的问题。作为该问题的解决方案,我们提出了一种视网膜-视顶盖-圆核通路的发放率模型,该模型描述了在没有周期性感受野结构的情况下,视顶盖和圆核广域神经元在处理基于傅里叶的运动时如何组织和保留时空信息。该模型纳入了关于视顶盖和圆核神经元的解剖学和电生理学实验数据,并且模型细胞捕捉到了视顶盖和圆核神经元对移动刺激的基本反应特征。我们表明,局部速度估计可以在后续处理步骤中通过叠加从圆核细胞反应中得出。提供了对该模型具有特异性和特征性的可实验测试的预测。因此,对于视网膜-视顶盖-圆核通路如何使动物能够检测和定位移动物体或估计其自身运动参数,可以给出一个确凿的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71ea/2825320/ffa28ff8b322/10827_2009_186_Fig1_HTML.jpg

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