Type-specific photoreceptor loss in pigeons after disruption of parasympathetic control of choroidal blood flow by the medial subdivision of the nucleus of Edinger-Westphal.

IF 1.1 4区 医学 Q4 NEUROSCIENCES Visual Neuroscience Pub Date : 2016-01-01 DOI:10.1017/S0952523816000043
A Reiner, T T Wong, C C Nazor, N Del Mar, M E C Fitzgerald
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引用次数: 2

Abstract

The medial part of the nucleus of Edinger-Westphal (EWM) in birds mediates light-regulated adaptive increases in choroidal blood flow (ChBF). We sought to characterize the effect of loss of EWM-mediated ChBF regulation on photoreceptor health in pigeons housed in either moderate intensity diurnal or constant light (CL). Photoreceptor abundance following complete EWM destruction was compared to that following a lesion in the pupil control circuit (as a control for spread of EWM lesions to the nearby pupil-controlling lateral EW) or following no EW damage. Birds were housed post-lesion in a 12 h 400 lux light/12 h dark light cycle for up to 16.5 months, or in constant 400 lux light for up to 3 weeks. Paraformaldehyde-glutaraldehyde fixed eyes were embedded in plastic, sectioned, slide-mounted, and stained with toluidine blue/azure II. Blinded analysis of photoreceptor outer segment abundance was performed, with outer segment types distinguished by oil droplet tint and laminar position. Brains were examined histologically to assess lesion accuracy. Disruption of pupil control had no adverse effect on photoreceptor outer segment abundance in either diurnal light or CL, but EWM destruction led to 50-60% loss of blue/violet cone outer segments in both light conditions, and a 42% loss of principal cone outer segments in CL. The findings indicate that adaptive regulation of ChBF by the EWM circuit plays a role in maintaining photoreceptor health and mitigates the harmful effect of light on photoreceptors, especially short wavelength-sensitive cone photoreceptors.

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Edinger-Westphal核内侧细分破坏副交感神经对脉络膜血流的控制后鸽子类型特异性光感受器的丧失。
鸟类Edinger-Westphal核(EWM)内侧部分介导光调节的脉络膜血流量(ChBF)的适应性增加。我们试图描述ewm介导的ChBF调节丧失对饲养在中等强度昼夜或恒定光(CL)下的鸽子光感受器健康的影响。将EWM完全破坏后的光感受器丰度与瞳孔控制回路受损后的光感受器丰度(作为EWM病变向附近瞳孔控制侧EW扩散的控制)或EW未受损后的光感受器丰度进行比较。损伤后将雏鸟置于12小时400勒克斯光照/12小时暗光循环中长达16.5个月,或在400勒克斯恒定光照下长达3周。多聚甲醛-戊二醛固定眼包埋于塑料中,切片,载玻片,甲苯胺蓝/天蓝II染色。对光感受器外段丰度进行盲法分析,通过油滴颜色和层流位置来区分外段类型。对大脑进行组织学检查以评估病变的准确性。在日光和强光条件下,瞳孔控制的破坏对光感受器外段丰度没有不利影响,但EWM破坏导致两种光条件下蓝色/紫色视锥细胞外段损失50-60%,强光条件下主要视锥细胞外段损失42%。研究结果表明,EWM回路对ChBF的自适应调节在维持光感受器健康和减轻光对光感受器,特别是短波敏锥状光感受器的有害影响中起着重要作用。
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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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