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小鼠视网膜中的三种小感受野神经节细胞对大小、速度和物体运动具有明显的调谐特性。

Three Small-Receptive-Field Ganglion Cells in the Mouse Retina Are Distinctly Tuned to Size, Speed, and Object Motion.

作者信息

Jacoby Jason, Schwartz Gregory W

机构信息

Department of Ophthalmology.

Department of Ophthalmology,

出版信息

J Neurosci. 2017 Jan 18;37(3):610-625. doi: 10.1523/JNEUROSCI.2804-16.2016.

Abstract

UNLABELLED

Retinal ganglion cells (RGCs) are frequently divided into functional types by their ability to extract and relay specific features from a visual scene, such as the capacity to discern local or global motion, direction of motion, stimulus orientation, contrast or uniformity, or the presence of large or small objects. Here we introduce three previously uncharacterized, nondirection-selective ON-OFF RGC types that represent a distinct set of feature detectors in the mouse retina. The three high-definition (HD) RGCs possess small receptive-field centers and strong surround suppression. They respond selectively to objects of specific sizes, speeds, and types of motion. We present comprehensive morphological characterization of the HD RGCs and physiological recordings of their light responses, receptive-field size and structure, and synaptic mechanisms of surround suppression. We also explore the similarities and differences between the HD RGCs and a well characterized RGC with a comparably small receptive field, the local edge detector, in response to moving objects and textures. We model populations of each RGC type to study how they differ in their performance tracking a moving object. These results, besides introducing three new RGC types that together constitute a substantial fraction of mouse RGCs, provide insights into the role of different circuits in shaping RGC receptive fields and establish a foundation for continued study of the mechanisms of surround suppression and the neural basis of motion detection.

SIGNIFICANCE STATEMENT

The output cells of the retina, retinal ganglion cells (RGCs), are a diverse group of ∼40 distinct neuron types that are often assigned "feature detection" profiles based on the specific aspects of the visual scene to which they respond. Here we describe, for the first time, morphological and physiological characterization of three new RGC types in the mouse retina, substantially augmenting our understanding of feature selectivity. Experiments and modeling show that while these three "high-definition" RGCs share certain receptive-field properties, they also have distinct tuning to the size, speed, and type of motion on the retina, enabling them to occupy different niches in stimulus space.

摘要

未标注

视网膜神经节细胞(RGCs)常根据其从视觉场景中提取和传递特定特征的能力分为功能类型,例如辨别局部或全局运动、运动方向、刺激方向、对比度或均匀性,或大或小物体的存在的能力。在此,我们介绍三种以前未被描述过的、非方向选择性的开 - 关RGC类型,它们代表了小鼠视网膜中一组独特的特征检测器。这三种高分辨率(HD)RGC具有小的感受野中心和强烈的周边抑制。它们对特定大小、速度和运动类型的物体有选择性反应。我们展示了HD RGC的全面形态学特征以及它们的光反应、感受野大小和结构的生理记录,以及周边抑制的突触机制。我们还探讨了HD RGC与一个特征明确的、具有相当小的感受野的RGC(局部边缘检测器)在对移动物体和纹理的反应方面的异同。我们对每种RGC类型的群体进行建模,以研究它们在跟踪移动物体的性能方面有何不同。这些结果除了引入三种新的RGC类型,它们共同构成了小鼠RGC的很大一部分之外,还为深入了解不同回路在塑造RGC感受野中的作用提供了见解,并为继续研究周边抑制机制和运动检测的神经基础奠定了基础。

意义声明

视网膜的输出细胞,即视网膜神经节细胞(RGCs),是一组多样的约40种不同的神经元类型,它们通常根据其对视觉场景的特定方面的反应被赋予“特征检测”特征。在此,我们首次描述了小鼠视网膜中三种新的RGC类型的形态学和生理学特征,极大地增强了我们对特征选择性的理解。实验和建模表明,虽然这三种“高分辨率”RGC共享某些感受野特性,但它们对视网膜上运动的大小、速度和类型也有不同的调谐,使它们能够在刺激空间中占据不同的生态位。

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