老年人低亮度视力与眼像差的关系。

IF 1.6 4区 医学 Q3 OPHTHALMOLOGY Optometry and Vision Science Pub Date : 2023-12-01 Epub Date: 2023-11-27 DOI:10.1097/OPX.0000000000002093
Tatsuya Iizuka, Takushi Kawamorita, Tomoya Handa, Hitoshi Ishikawa
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引用次数: 0

摘要

意义:本研究强调了暮光适应对低亮度视敏度可靠评估的重要性,以及了解低亮度视敏度与眼像差的关系。目的:由于视网膜和光学分辨率降低,亮度降低,人眼的视觉敏锐度降低;然而,具体细节尚不清楚。本研究旨在量化屈光、瞳孔直径和眼像差在从高光环境到低光环境过渡期间对视力的影响,从而为低光视力测量的标准化做出贡献。方法:共纳入27例老年患者,平均年龄70.0±4.1岁。根据糖尿病视网膜病变早期治疗研究方案,在高亮度(300 cd/m2)、低亮度(10 cd/m2)和低亮度短期(15分钟)暮光适应(10 cd/m2)三种亮度条件下测量视力。结果:在暮色适应条件下,300 cd/m2、10 cd/m2和10 cd/m2时,视力最小分辨角的平均对数分别为-0.09±0.09、0.10±0.13和0.03±0.09。多元回归分析表明,球差(P < 0.005)和四叶光差(P < 0.005)是影响暮色适应后低亮度视力的显著因素,该模型调整后的R2值为0.35 (P < 0.005)。结论:虽然与神经效应相比,眼像差对低亮度视力的影响可能相对较小,但它仍然是一个不可忽视的关键因素。缺乏黄昏(或黑暗)适应会导致眼像差和神经效应,潜在地导致低亮度视力测量的不准确性。
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Relationship of Low-luminance Visual Acuity with Ocular Aberrations in Older Participants.

Significance: This study highlights the importance of twilight adaptation for reliable assessment of low-luminance visual acuity and understanding the relationship between low-luminance visual acuity and ocular aberrations.

Purpose: The human eye experiences reduced visual acuity as luminance decreases owing to reduced retinal and optical resolutions; however, the details are unclear. This study aimed to quantify the effects of refraction, pupil diameter, and ocular aberrations on visual acuity during the transition from high- to low-light environments, thereby contributing to the standardization of low-luminance visual acuity measurements.

Methods: In total, 27 older participants with a mean age of 70.0 ± 4.1 years were included in this study. Visual acuity was measured according to the Early Treatment Diabetic Retinopathy Study (ETDRS) protocol with three luminance conditions: high luminance (300 cd/m 2 ), low luminance (10 cd/m 2 ), and low luminance with short-term (15-minute) twilight adaptation (10 cd/m 2 ).

Results: The mean logarithm of minimum angle of resolution values of visual acuity were -0.09 ± 0.09, 0.10 ± 0.13, and 0.03 ± 0.09 at 300, 10, and 10 cd/m 2 with twilight adaptation, respectively. Multiple regression analysis determined that spherical aberration ( P < .005) and tetrafoil ( P < .005) were significant factors associated with low-luminance visual acuity after twilight adaptation, with an adjusted R2 value of 0.35 for this model ( P < .005).

Conclusions: Although the influence of ocular aberrations on low-luminance visual acuity may be relatively modest compared with neural effects, it remains a crucial factor that should not be overlooked. The absence of twilight (or dark) adaptation can cause ocular aberrations and neural effects, potentially leading to inaccuracies in the measurement of low-luminance visual acuity.

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来源期刊
Optometry and Vision Science
Optometry and Vision Science 医学-眼科学
CiteScore
2.80
自引率
7.10%
发文量
210
审稿时长
3-6 weeks
期刊介绍: Optometry and Vision Science is the monthly peer-reviewed scientific publication of the American Academy of Optometry, publishing original research since 1924. Optometry and Vision Science is an internationally recognized source for education and information on current discoveries in optometry, physiological optics, vision science, and related fields. The journal considers original contributions that advance clinical practice, vision science, and public health. Authors should remember that the journal reaches readers worldwide and their submissions should be relevant and of interest to a broad audience. Topical priorities include, but are not limited to: clinical and laboratory research, evidence-based reviews, contact lenses, ocular growth and refractive error development, eye movements, visual function and perception, biology of the eye and ocular disease, epidemiology and public health, biomedical optics and instrumentation, novel and important clinical observations and treatments, and optometric education.
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