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视神经损伤前后斑马鱼视顶盖的视觉处理

Visual processing of the zebrafish optic tectum before and after optic nerve damage.

作者信息

McDowell Angela L, Dixon Lee J, Houchins Jennifer D, Bilotta Joseph

机构信息

Department of Psychology and Biotechnology Center, Western Kentucky University, Bowling Green 42101, USA.

出版信息

Vis Neurosci. 2004 Mar-Apr;21(2):97-106. doi: 10.1017/s0952523804043019.

Abstract

Although the zebrafish has become an important model in visual neuroscience, little has been done to examine the processing of its higher visual centers. The purpose of this work was twofold. The first purpose was to examine the physiology of the zebrafish retinotectal system and its relationship to retinal physiology. Spectral sensitivity functions were derived from visually evoked tectal responses and these functions were compared to the functions of electroretinogram (ERG) responses obtained using the same stimulus conditions. The second purpose was to examine the recovery of visual functioning of the tectum following optic nerve damage. The optic nerves of adult zebrafish were damaged (crushed), and tectal visual processing was assessed following damage. The results showed that the spectral sensitivity functions based on the On-responses of the tectum and ERG were qualitatively similar. The functions based on each response type received similar cone contributions including both nonopponent and opponent contributions. However, the spectral sensitivity functions based on the Off-responses of the tectum and ERG differed. The results also showed that the zebrafish visual system is capable of neural regeneration. By 90 days following an optic nerve crush, the spectral sensitivity function based on the tectal On-response was similar to functions obtained from normal zebrafish. Although the tectal Off-response did recover, the spectral sensitivity based on the Off-response was not the same as the function of normal zebrafish. These results support the notion that different levels of the visual system process information differently and that the zebrafish visual system, like those of other lower vertebrates, is capable of functional regeneration.

摘要

尽管斑马鱼已成为视觉神经科学中的重要模型,但对其高级视觉中枢的处理过程研究甚少。这项工作有两个目的。第一个目的是研究斑马鱼视网膜顶盖系统的生理学及其与视网膜生理学的关系。通过视觉诱发的顶盖反应得出光谱敏感性函数,并将这些函数与在相同刺激条件下获得的视网膜电图(ERG)反应的函数进行比较。第二个目的是研究视神经损伤后顶盖视觉功能的恢复情况。对成年斑马鱼的视神经进行损伤(挤压),并在损伤后评估顶盖的视觉处理能力。结果表明,基于顶盖的开反应和ERG的光谱敏感性函数在性质上相似。基于每种反应类型的函数接受了相似的视锥细胞贡献,包括非拮抗和拮抗贡献。然而,基于顶盖的关反应和ERG的光谱敏感性函数不同。结果还表明,斑马鱼视觉系统能够进行神经再生。在视神经挤压后90天,基于顶盖开反应的光谱敏感性函数与从正常斑马鱼获得的函数相似。尽管顶盖关反应确实恢复了,但基于关反应的光谱敏感性与正常斑马鱼的函数不同。这些结果支持了这样一种观点,即视觉系统的不同层次对信息的处理方式不同,并且斑马鱼视觉系统与其他低等脊椎动物的视觉系统一样,能够进行功能再生。

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