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近视中的光学与视觉饮食

Optical and Visual Diet in Myopia.

作者信息

Marcos Susana

机构信息

Center for Visual Science, Flaum Eye Institute, The Institute of Optics, University of Rochester, Rochester, New York, United States.

出版信息

Invest Ophthalmol Vis Sci. 2025 Jun 5;66(7):3. doi: 10.1167/iovs.66.7.3.

Abstract

The alarming increase in myopia prevalence in modern times is attributed to environmental changes affecting young individuals. Visual scenes are projected onto the retina by the eye's optical components and sampled by retinal photoreceptors, shaping the spatial, temporal, and chromatic "visual diet" fed to the visual system. These inputs provide essential signaling for proper emmetropization and, in eyes that develop myopia, trigger the cascade of events leading to excessive axial elongation. This article offers foundational components for formulating computational models of myopic eyes and highlights available and needed optical and structural data to construct longitudinal three-dimensional optical eye models in emmetropes and developing myopes. These wide-angle eye models, in both relaxed and accommodated states, will enable understanding of the changes the eye undergoes at myopia onset and potentially allow exploration of cause-effect relationships in myopia development. Age- and refractive-dependent eye models also serve as platforms to test the coupling of novel optical treatments for myopia control with the resulting blur patterns across the retina. Chromatic, spatial, and temporal stimuli are explored as plausible cues for emmetropization. The article also reviews published theories on mechanisms for encoding the sign of defocus and triggering axial elongation. Fully quantitative technologies for ocular geometrical, biometric, and optical evaluation, as well as for monitoring physical features of the environment, are critical for collecting multidimensional data sets that enable predictive models. Given that time spent outdoors is a major factor associated with myopia development, exploring mechanisms that connect light exposure with myopia is paramount. The article also reviews current proposed mechanisms linked to retinal dopaminergic pathways, dysfunction of melanopsin signaling, and disruption of circadian rhythms-factors altered in modern lifestyles by artificial illumination and prolonged use of digital displays. Understanding the interplay between distinct environmental attributes (e.g., light intensity, spatial frequency distribution, blur, spectral characteristics) and the filtering effects of ocular optics will help elucidate pivotal myopiagenic signals and potentially unveil the complex, multifactorial mechanisms relevant for myopia management. Additionally, an annex appended to the article discusses unresolved inquiries and promising research directions in myopia research, drawing from expert insights.

摘要

现代近视患病率惊人的增长归因于影响年轻人的环境变化。视觉场景通过眼睛的光学部件投射到视网膜上,并由视网膜光感受器进行采样,从而形成输送给视觉系统的空间、时间和色彩“视觉营养”。这些输入为正常的正视化提供了必要的信号,而在发生近视的眼睛中,它们会触发一系列导致眼轴过度伸长的事件。本文提供了构建近视眼计算模型的基础要素,并强调了构建正视眼和发展性近视眼纵向三维光学眼模型所需的现有和必要的光学及结构数据。这些处于放松和调节状态的广角眼模型,将有助于理解眼睛在近视发生时所经历的变化,并有可能探索近视发展中的因果关系。年龄和屈光依赖的眼模型还可作为平台,用于测试新型近视控制光学治疗与视网膜上产生的模糊模式之间的耦合。色彩、空间和时间刺激被视为正视化的可能线索。本文还回顾了已发表的关于散焦信号编码和触发眼轴伸长机制的理论。用于眼部几何、生物特征和光学评估以及监测环境物理特征的全定量技术,对于收集能够实现预测模型的多维数据集至关重要。鉴于户外活动时间是与近视发展相关的一个主要因素,探索将光照与近视联系起来的机制至关重要。本文还回顾了当前提出的与视网膜多巴胺能通路、黑视蛋白信号功能障碍以及昼夜节律紊乱相关的机制——这些因素在现代生活方式中因人工照明和长时间使用数字显示屏而发生改变。理解不同环境属性(如光强度、空间频率分布、模糊、光谱特征)之间的相互作用以及眼光学的过滤作用,将有助于阐明关键的近视成因信号,并有可能揭示与近视管理相关的复杂多因素机制。此外,本文附录借鉴专家见解,讨论了近视研究中未解决的问题和有前景的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b163/12151263/be16767e7f90/iovs-66-7-3-f001.jpg

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