The Retinal Basis of Vertebrate Color Vision.

IF 5 2区 医学 Q1 NEUROSCIENCES
T Baden, D Osorio
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引用次数: 0

Abstract

The jawless fish that were ancestral to all living vertebrates had four spectral cone types that were probably served by chromatic-opponent retinal circuits. Subsequent evolution of photoreceptor spectral sensitivities is documented for many vertebrate lineages, giving insight into the ecological adaptation of color vision. Beyond the photoreceptors, retinal color processing is best understood in mammals, especially the blueON system, which opposes short- against long-wavelength receptor responses. For other vertebrates that often have three or four types of cone pigment, new findings from zebrafish are extending older work on teleost fish and reptiles to reveal rich color circuitry. Here, horizontal cells establish diverse and complex spectral responses even in photoreceptor outputs. Cone-selective connections to bipolar cells then set up color-opponent synaptic layers in the inner retina, which lead to a large variety of color-opponent channels for transmission to the brain via retinal ganglion cells.

脊椎动物色觉的视网膜基础。
无颌鱼类是所有现生脊椎动物的祖先,它们有四种光谱视锥类型,很可能由色差视网膜电路提供服务。许多脊椎动物种系的光感受器光谱敏感性的后续进化都有记录,这让人们对色彩视觉的生态适应有了深入的了解。除了感光器之外,哺乳动物对视网膜色彩处理的理解最为透彻,尤其是蓝光系统(blueON),它将短波与长波受体反应对立起来。其他脊椎动物通常有三到四种视锥色素,斑马鱼的新发现扩展了对远洋鱼类和爬行动物的研究,揭示了丰富的色彩回路。在这里,水平细胞甚至在感光器输出端也能建立多样而复杂的光谱反应。锥体选择性连接到双极细胞,然后在视网膜内层建立起色彩对立突触层,从而形成大量色彩对立通道,通过视网膜神经节细胞传输到大脑。
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来源期刊
Annual Review of Vision Science
Annual Review of Vision Science Medicine-Ophthalmology
CiteScore
11.10
自引率
1.70%
发文量
19
期刊介绍: The Annual Review of Vision Science reviews progress in the visual sciences, a cross-cutting set of disciplines which intersect psychology, neuroscience, computer science, cell biology and genetics, and clinical medicine. The journal covers a broad range of topics and techniques, including optics, retina, central visual processing, visual perception, eye movements, visual development, vision models, computer vision, and the mechanisms of visual disease, dysfunction, and sight restoration. The study of vision is central to progress in many areas of science, and this new journal will explore and expose the connections that link it to biology, behavior, computation, engineering, and medicine.
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