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鸟类大脑中的行为、结构和神经化学不对称性:用于研究视觉发育与处理的模型系统。

Behavioral, structural and neurochemical asymmetries in the avian brain: a model system for studying visual development and processing.

作者信息

Rogers L

机构信息

Department of Physiology, University of New England, Armidale, NSW, Australia.

出版信息

Neurosci Biobehav Rev. 1996 Autumn;20(3):487-503. doi: 10.1016/0149-7634(95)00024-0.

Abstract

The emphasis of this review is on the visual systems and lateralized visually guided behavior in several avian species. Lateral asymmetry is known to be present in the tectofugal visual projections to the forebrain of the pigeon and in the thalamofugal visual projections to the forebrain of the chicken. These structural asymmetries are discussed in the context of the behavioral and neurochemical asymmetries. While recognizing the need to investigate the organization of both of the visual pathways within one avian species; this review reasons inductively that the lateralized organization of the two visual pathways leads to binocular input to the right hemisphere via the thalamofugal visual system and to the left hemisphere via the tectofugal visual system. For each system, input to the other hemisphere is primarily monocular. This specialization of the hemispheres for visual processing has predictable effects on behavior. The role of asymmetrical light stimulation of the eyes of the embryo in determining the lateralizations in the visual pathways and some behaviors is discussed, as are other lateralizations generated or altered by imprinting and passive avoidance learning.

摘要

本综述的重点是几种鸟类的视觉系统以及视觉引导的偏侧性行为。已知在鸽子前脑的顶盖传出视觉投射以及鸡前脑的丘脑传出视觉投射中存在侧向不对称。这些结构不对称在行为和神经化学不对称的背景下进行讨论。在认识到有必要研究单一鸟类物种内两条视觉通路的组织的同时;本综述归纳推理得出,两条视觉通路的偏侧化组织导致通过丘脑传出视觉系统向右侧半球输入双眼视觉信息,通过顶盖传出视觉系统向左侧半球输入双眼视觉信息。对于每个系统,向另一半球的输入主要是单眼的。半球在视觉处理方面的这种特化对行为有可预测的影响。文中讨论了胚胎眼睛不对称光刺激在确定视觉通路和某些行为中的偏侧化方面的作用,以及印记和被动回避学习产生或改变的其他偏侧化。

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