眼科诊断的范式转变。

J Sebag, Alfredo A Sadun, Eric A Pierce
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引用次数: 0

摘要

目的:未来眼科医学的发展将见证诊断模式的转变,从关注功能障碍和疾病转变为更好地衡量心理生理功能和健康状况。确定基因型的实用方法将变得越来越重要,并且需要非侵入性纳米技术来检测组织病理学之前的分子变化:这不是一篇综述,也不意味着全面。方法:本文并非综述,也无意面面俱到。我们选择了一些特定主题,以说明将影响眼科诊断未来的重要模式转变的原则。我们的印象是,未来的视力评估将超越视敏度,从心理物理功能的角度评估眼部健康。疾病的定义将把基因型纳入历来以表型为中心的学科。无创纳米技术将实现从细胞层面到亚细胞分子层面的疾病检测范式转变:结果:通过测量对比敏感度、色觉和黄斑功能,可以对视力进行超越视敏度的评估,因为这些可以更好地了解衰老和疾病的影响。与过去相比,通过设计评估特定黄斑细胞功能的测试,可以对视觉失真进行量化,并更好地评估视觉的心理物理基础。随着我们对眼科疾病遗传基础的了解不断加深,将能更好地确定眼部健康和疾病的特征。非侵入性纳米技术可以评估晶状体、玻璃体和黄斑在发生可见病变之前的分子变化。氧代谢和循环生理是眼部健康的可测量指标,可检测生理变化和早期疾病:以上对眼科范式转变的概述表明,未来眼科诊断技术将得到显著改善。所选主题说明了这些范式转变的原则,可作为进一步研究和开发的指南。事实上,在眼科领域成功实现这些范式转变可为所有医疗保健领域的类似发展提供有益的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Paradigm Shifts in Ophthalmic Diagnostics.

Purpose: Future advances in ophthalmology will see a paradigm shift in diagnostics from a focus on dysfunction and disease to better measures of psychophysical function and health. Practical methods to define genotypes will be increasingly important and non-invasive nanotechnologies are needed to detect molecular changes that predate histopathology.

Methods: This is not a review nor meant to be comprehensive. Specific topics have been selected to illustrate the principles of important paradigm shifts that will influence the future of ophthalmic diagnostics. It is our impression that future evaluation of vision will go beyond visual acuity to assess ocular health in terms of psychophysical function. The definition of disease will incorporate genotype into what has historically been a phenotype-centric discipline. Non-invasive nanotechnologies will enable a paradigm shift from disease detection on a cellular level to a sub-cellular molecular level.

Results: Vision can be evaluated beyond visual acuity by measuring contrast sensitivity, color vision, and macular function, as these provide better insights into the impact of aging and disease. Distortions can be quantified and the psychophysical basis of vision can be better evaluated than in the past by designing tests that assess particular macular cell function(s). Advances in our understanding of the genetic basis of eye diseases will enable better characterization of ocular health and disease. Non-invasive nanotechnologies can assess molecular changes in the lens, vitreous, and macula that predate visible pathology. Oxygen metabolism and circulatory physiology are measurable indices of ocular health that can detect variations of physiology and early disease.

Conclusions: This overview of paradigm shifts in ophthalmology suggests that the future will see significant improvements in ophthalmic diagnostics. The selected topics illustrate the principles of these paradigm shifts and should serve as a guide to further research and development. Indeed, successful implementation of these paradigm shifts in ophthalmology may provide useful guidance for similar developments in all of healthcare.

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