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用于近视控制的新型光学设计的视觉质量与调节功能

Visual Quality and Accommodation With Novel Optical Designs for Myopia Control.

作者信息

Aissati Sara, Zou Tianlun, Goswami Sabyasachi, Zheleznyak Len, Marcos Susana

机构信息

Center for Visual Science, University of Rochester, Rochester, NY, USA.

The Institute of Optics, University of Rochester, Rochester, NY, USA.

出版信息

Transl Vis Sci Technol. 2024 Dec 2;13(12):6. doi: 10.1167/tvst.13.12.6.

Abstract

PURPOSE

We evaluated through-focus visual performance and accommodative response in young subjects through three segmented multifocal designs for myopia control, mapped on the spatial light modulator of a monocular adaptive optics visual simulator (AOVS), and compared with single vision (SV).

METHODS

The segmented multifocal patterns included a 4 mm diameter center distance zone and offset peripheral defocus (MP1), astigmatism and coma (MP2), or a combination (MP3). High-contrast logMAR visual acuity (VA) was measured with monochromatic stimuli (555 nm). Ocular aberrations were measured using the Hartmann-Shack aberrometry channel. Measurements were taken for distance viewing and five accommodative demands (AD, up to 4.5 D). Accommodative lag was calculated from the dioptric shift of the maximum retinal image quality metric from the corresponding wave aberrations.

RESULTS

Best-corrected logMAR VA was -0.11 ± 0.02 (SV) and slightly reduced by multifocal patterns (-0.08 ± 0.03 [MP1], -0.07 ± 0.04 [MP2], -0.05 ± 0.04 [MP3]). Accommodative lag with SV was lower in emmetropes than myopes (by 0.43D for the largest demand). MP1 significantly decreased accommodative lag in myopes (P = 0.03), unlike MP2 or MP3. Multifocal patterns reduced pupil diameter in myopes at all distances. MP1 improved accommodative response in myopes without compromising distance vision.

CONCLUSIONS

AOVS helped to understand the interplay of physiological and lens design factors, potentially guiding custom corrections. A center distance with off-centered positive power in the lens periphery could feature suitable properties (peripheral focus and accommodative focus control) for myopia control.

TRANSLATIONAL RELEVANCE

We demonstrate a two-zone contact lens design that provides excellent visual quality and accommodative response, important properties for myopia control lenses.

摘要

目的

我们通过三种用于控制近视的分段多焦点设计,在单眼自适应光学视觉模拟器(AOVS)的空间光调制器上进行映射,评估了年轻受试者的透过焦点视觉性能和调节反应,并与单焦点(SV)进行比较。

方法

分段多焦点图案包括一个直径4毫米的中心距离区和偏心周边离焦(MP1)、散光和彗差(MP2)或两者组合(MP3)。使用单色刺激(555纳米)测量高对比度对数视力(VA)。使用哈特曼-夏克像差仪通道测量眼像差。在远距离观看和五种调节需求(AD,高达4.5D)下进行测量。调节滞后由最大视网膜图像质量指标相对于相应波像差的屈光度变化计算得出。

结果

最佳矫正对数视力VA在SV组为-0.11±0.02,多焦点图案使其略有降低(MP1组为-0.08±0.03,MP2组为-0.07±0.04,MP3组为-0.05±0.04)。正视眼的SV调节滞后低于近视眼(最大需求时低0.43D)。与MP2或MP3不同,MP1显著降低了近视眼的调节滞后(P = 0.03)。多焦点图案在所有距离下均减小了近视眼的瞳孔直径。MP1在不损害远视力的情况下改善了近视眼的调节反应。

结论

AOVS有助于理解生理和晶状体设计因素之间的相互作用,可能指导定制矫正。晶状体周边具有偏心正焦度的中心距离可能具有适合控制近视的特性(周边焦点和调节焦点控制)。

转化相关性

我们展示了一种双区隐形眼镜设计,该设计提供了出色的视觉质量和调节反应,这是控制近视镜片的重要特性。

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