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调节的客观幅度随瞳孔大小的变化。

Changes in the objective amplitude of accommodation with pupil size.

作者信息

Lara Francisco, Bernal-Molina Paula, Fernández-Sánchez Vicente, López-Gil Norberto

机构信息

*MSc †PhD Grupo de Ciencias de la Visión, Universidad de Murcia, Murcia, Spain (all authors); and Grupo de Investigación en Optometría, Universidad de Valencia, Valencia, Spain (PB-M).

出版信息

Optom Vis Sci. 2014 Oct;91(10):1215-20. doi: 10.1097/OPX.0000000000000383.

Abstract

PURPOSE

We evaluate the effect of pupil size on objectively measured amplitude of accommodation (AA).

METHODS

Pupil diameter and wavefront aberrometry were obtained in 15 eyes when stimulus swept across the range of clear vision in steps of 0.5 diopters. Wavefront refraction techniques were used to compute objective AA as the maximum refractive change. Measurements were obtained monocularly under low and high ambient room lighting conditions with a fixed luminance of the fixation target. Amplitude of accommodation computations were performed taking into account just paraxial rays (paraxial AA) or including the effects of the change of spherical aberration during accommodation (minRMS AA).

RESULTS

Mean pupil size values at low light level were 6.26 mm (relaxed) and 4.15 mm (maximum accommodation), whereas at the high light level, those values became 4.74 and 3.04 mm, respectively. The effects of both light level on accommodation were significant (p < 0.001), and accommodative miosis was slightly larger at low light levels. Mean minRMS and paraxial AA were always greater by more than 1 diopter in high than in low ambient lighting conditions (p < 0.01), indicating a significant impact of pupil size on AA.

CONCLUSIONS

The influence of the ambient lighting on the objective AA is not only attributed to the increased effects of spherical aberration as the pupil dilates but mostly attributed to a decrease in the paraxial accommodation as pupil dilates.

摘要

目的

我们评估瞳孔大小对客观测量的调节幅度(AA)的影响。

方法

当刺激以0.5屈光度的步长扫过清晰视觉范围时,在15只眼中获取瞳孔直径和波前像差。使用波前屈光技术将客观AA计算为最大屈光变化。在固定亮度的注视目标下,于低和高环境室内照明条件下单眼进行测量。考虑近轴光线(近轴AA)或包括调节期间球差变化的影响(最小均方根AA)来进行调节幅度计算。

结果

低光照水平下的平均瞳孔大小值在放松时为6.26 mm,最大调节时为4.15 mm,而在高光照水平下,这些值分别变为4.74和3.04 mm。光照水平对调节的影响均具有显著性(p < 0.001),且低光照水平下的调节性瞳孔缩小略大。在高环境照明条件下,平均最小均方根和近轴AA始终比低环境照明条件下大1屈光度以上(p < 0.01),表明瞳孔大小对AA有显著影响。

结论

环境照明对客观AA的影响不仅归因于瞳孔扩张时球差效应的增加,而且主要归因于瞳孔扩张时近轴调节的减少。

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