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视觉-小脑通路及其在鸟类飞行控制中的作用。

Visual-Cerebellar Pathways and Their Roles in the Control of Avian Flight.

作者信息

Wylie Douglas R, Gutiérrez-Ibáñez Cristián, Gaede Andrea H, Altshuler Douglas L, Iwaniuk Andrew N

机构信息

Neuroscience and Mental Health Institute, University of Alberta, Edmonton, AB, Canada.

Department of Zoology, University of British Columbia, Vancouver, BC, Canada.

出版信息

Front Neurosci. 2018 Apr 9;12:223. doi: 10.3389/fnins.2018.00223. eCollection 2018.

Abstract

In this paper, we review the connections and physiology of visual pathways to the cerebellum in birds and consider their role in flight. We emphasize that there are two visual pathways to the cerebellum. One is to the vestibulocerebellum (folia IXcd and X) that originates from two retinal-recipient nuclei that process optic flow: the nucleus of the basal optic root (nBOR) and the pretectal nucleus lentiformis mesencephali (LM). The second is to the oculomotor cerebellum (folia VI-VIII), which receives optic flow information, mainly from LM, but also local visual motion information from the optic tectum, and other visual information from the ventral lateral geniculate nucleus (Glv). The tectum, LM and Glv are all intimately connected with the pontine nuclei, which also project to the oculomotor cerebellum. We believe this rich integration of visual information in the cerebellum is important for analyzing motion parallax that occurs during flight. Finally, we extend upon a suggestion by Ibbotson (2017) that the hypertrophy that is observed in LM in hummingbirds might be due to an increase in the processing demands associated with the pathway to the oculomotor cerebellum as they fly through a cluttered environment while feeding.

摘要

在本文中,我们回顾了鸟类视觉通路与小脑之间的联系及生理学,并探讨了它们在飞行中的作用。我们强调,存在两条通向小脑的视觉通路。一条通向前庭小脑(第IXcd叶和第X叶),它起源于两个处理视觉流的视网膜接收核:基底视根核(nBOR)和中脑顶盖前核豆状核(LM)。第二条通向动眼神经小脑(第VI - VIII叶),它接收视觉流信息,主要来自LM,但也接收来自视顶盖的局部视觉运动信息,以及来自腹侧外侧膝状核(Glv)的其他视觉信息。视顶盖、LM和Glv都与脑桥核紧密相连,脑桥核也投射到动眼神经小脑。我们认为,小脑对视觉信息的这种丰富整合对于分析飞行过程中出现的运动视差很重要。最后,我们扩展了伊博森(2017年)的一个观点,即观察到的蜂鸟LM肥大可能是由于它们在进食时穿过杂乱环境飞行时,与通向动眼神经小脑的通路相关的处理需求增加所致。

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