Superior colliculus projections to target populations in the supraoculomotor area of the macaque monkey.

IF 1.1 4区 医学 Q4 NEUROSCIENCES
Visual Neuroscience Pub Date : 2021-01-01 Epub Date: 2021-11-11 DOI:10.1017/s095252382100016x
Paul J May, Martin O Bohlen, Eddie Perkins, Niping Wang, Susan Warren
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引用次数: 3

Abstract

A projection by the superior colliculus to the supraoculomotor area (SOA) located dorsal to the oculomotor complex was first described in 1978. This projection's targets have yet to be identified, although the initial study suggested that vertical gaze motoneuron dendrites might receive this input. Defining the tectal targets is complicated by the fact the SOA contains a number of different cell populations. In the present study, we used anterograde tracers to characterize collicular axonal arbors and retrograde tracers to label prospective SOA target populations in macaque monkeys. Close associations were not found with either superior or medial rectus motoneurons whose axons supply singly innervated muscle fibers. S-group motoneurons, which supply superior rectus multiply innervated muscle fibers, appeared to receive a very minor input, but C-group motoneurons, which supply medial rectus multiply innervated muscle fibers, received no input. A number of labeled boutons were observed in close association with SOA neurons projecting to the spinal cord, or the reticular formation in the pons and medulla. These descending output neurons are presumed to be peptidergic cells within the centrally projecting Edinger-Westphal population. It is possible the collicular input provides a signaling function for neurons in this population that serve roles in either stress responses, or in eating and drinking behavior. Finally, a number of close associations were observed between tectal terminals and levator palpebrae superioris motoneurons, suggesting the possibility that the superior colliculus provides a modest direct input for raising the eyelids during upward saccades.

上丘投射到目标种群的猕猴上动眼区。
1978年首次报道了由上丘向动眼肌复合体背侧的动眼肌上区(SOA)的投射。虽然最初的研究表明垂直凝视运动神经元树突可能会接受这种输入,但这种投射的目标尚未确定。由于SOA包含许多不同的单元群,因此定义整体目标很复杂。在本研究中,我们使用顺行示踪剂来表征collcollaraxonal乔木,并使用逆行示踪剂来标记猕猴的SOA预期目标群体。未发现与轴突供应单神经支配肌纤维的上直肌或内直肌运动神经元有密切联系。s组运动神经元,供应上直肌多神经支配肌纤维,似乎接收到非常小的输入,但c组运动神经元,供应内侧直肌多神经支配肌纤维,没有接收到输入。许多标记钮扣被观察到与投射到脊髓的SOA神经元或脑桥和髓质的网状结构密切相关。这些下降的输出神经元被认为是中央突出的Edinger-Westphal群中的肽能细胞。有可能collcollial输入为这个群体中的神经元提供了一种信号功能,这些神经元在应激反应或饮食行为中发挥作用。最后,我们观察到在顶端和提上睑肌运动神经元之间有许多密切的联系,这表明在向上扫视时,上丘可能为眼睑的抬升提供了适度的直接输入。
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来源期刊
Visual Neuroscience
Visual Neuroscience 医学-神经科学
CiteScore
2.20
自引率
5.30%
发文量
8
审稿时长
>12 weeks
期刊介绍: Visual Neuroscience is an international journal devoted to the publication of experimental and theoretical research on biological mechanisms of vision. A major goal of publication is to bring together in one journal a broad range of studies that reflect the diversity and originality of all aspects of neuroscience research relating to the visual system. Contributions may address molecular, cellular or systems-level processes in either vertebrate or invertebrate species. The journal publishes work based on a wide range of technical approaches, including molecular genetics, anatomy, physiology, psychophysics and imaging, and utilizing comparative, developmental, theoretical or computational approaches to understand the biology of vision and visuo-motor control. The journal also publishes research seeking to understand disorders of the visual system and strategies for restoring vision. Studies based exclusively on clinical, psychophysiological or behavioral data are welcomed, provided that they address questions concerning neural mechanisms of vision or provide insight into visual dysfunction.
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