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对闪光暴露的昼夜节律反应:概念化及指导未来方向的新数据

Circadian Responses to Light-Flash Exposure: Conceptualization and New Data Guiding Future Directions.

作者信息

Wong Kwoon Y, Fernandez Fabian-Xosé

机构信息

Department of Molecular, Cellular, & Developmental Biology, University of Michigan, Ann Arbor, MI, United States.

Department of Ophthalmology & Visual Sciences, University of Michigan, Ann Arbor, MI, United States.

出版信息

Front Neurol. 2021 Feb 11;12:627550. doi: 10.3389/fneur.2021.627550. eCollection 2021.

Abstract

A growing number of studies document circadian phase-shifting after exposure to millisecond light flashes. When strung together by intervening periods of darkness, these stimuli evoke pacemaker responses rivaling or outmatching those created by steady luminance, suggesting that the circadian system's relationship to light can be contextualized outside the principle of simple dose-dependence. In the current review, we present a brief chronology of this work. We then develop a conceptual model around it that attempts to relate the circadian effects of flashes to a natural integrative process the pacemaker uses to intermittently sample the photic information available at dawn and dusk. Presumably, these snapshots are employed as building blocks in the construction of a coherent representation of twilight the pacemaker consults to orient the next day's physiology (in that way, flash-resetting of pacemaker rhythms might be less an example of a circadian visual illusion and more an example of the kinds of gestalt inferences that the image-forming system routinely makes when identifying objects within the visual field; i.e., closure). We conclude our review with a discussion on the role of cones in the pacemaker's twilight predictions, providing new electrophysiological data suggesting that classical photoreceptors-but not melanopsin-are necessary for millisecond, intermediate-intensity flash responses in ipRGCs (intrinsically photosensitive retinal ganglion cells). Future investigations are necessary to confirm this "Cone Sentinel Model" of circadian flash-integration and twilight-prediction, and to further define the contribution of cones vs. rods in transducing pacemaker flash signals.

摘要

越来越多的研究记录了暴露于毫秒级光脉冲后昼夜节律的相位变化。当这些刺激由中间的黑暗期串联起来时,它们引发的起搏器反应可与稳定亮度产生的反应相媲美或更胜一筹,这表明昼夜节律系统与光的关系可以在简单剂量依赖性原则之外进行情境化。在本综述中,我们简要介绍了这项工作的时间顺序。然后,我们围绕它建立了一个概念模型,试图将闪光的昼夜节律效应与起搏器用于间歇性采样黎明和黄昏时可用光信息的自然整合过程联系起来。据推测,这些快照被用作构建起搏器参考以指导第二天生理活动的连贯暮光表征的基石(通过这种方式,起搏器节律的闪光重置可能更少是昼夜节律视觉错觉的一个例子,而更多是成像系统在识别视野内物体时常规进行的那种格式塔推理的例子;即闭合)。我们在综述结尾讨论了视锥细胞在起搏器暮光预测中的作用,提供了新的电生理数据,表明经典光感受器而非黑视蛋白对于内在光敏视网膜神经节细胞(ipRGCs)对毫秒级、中等强度闪光反应是必需的。未来的研究有必要证实这种昼夜节律闪光整合和暮光预测的“视锥哨兵模型”,并进一步确定视锥细胞与视杆细胞在转导起搏器闪光信号中的贡献。

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