调节刺激-反应函数与视网膜图像质量。

Accommodation stimulus-response function and retinal image quality.

作者信息

Buehren Tobias, Collins Michael J

机构信息

Contact Lens and Visual Optics Laboratory, School of Optometry, Victoria Park Road, Kelvin Grove, Queensland University of Technology, Brisbane, Qld 4059, Australia.

出版信息

Vision Res. 2006 May;46(10):1633-45. doi: 10.1016/j.visres.2005.06.009. Epub 2005 Jul 22.

Abstract

Accommodation stimulus-response function (ASRF) and its relationship to retinal image quality were investigated using a modified wavefront sensor. Ten subjects were presented with six vergence stimuli between 0.17 D and 5 D. For each vergence distance, ocular wavefronts and subjective visual acuity were measured. Wavefronts were analysed for a fixed 3-mm pupil diameter and for natural pupil sizes. Visual Strehl ratio computed in the frequency domain (VSOTF) and retinal images were calculated for each condition tested. Subjective visual acuity was significantly improved at intermediate vergence distances (1D and 2D; p < 0.01), and only decreased significantly at 5 D compared with 0.17 D (p < 0.05). VSOTF magnitude was associated with subjective visual acuity and VSOTF peak location correlated with accommodation error. Apparent accommodation errors due to spherical aberration were highly correlated with accommodation lead and lag for natural pupils (R(2) = 0.80) but not for fixed 3-mm pupils (R(2) < 0.00). The combination of higher-order aberrations and accommodation errors improved retinal image quality compared with accommodation errors or higher order aberrations alone. Pupil size and higher order aberrations play an important role in the ASRF.

摘要

使用改良的波前传感器研究了调节刺激-反应函数(ASRF)及其与视网膜图像质量的关系。10名受试者接受了0.17 D至5 D之间的六种聚散刺激。对于每个聚散距离,测量了眼波前和主观视力。分析了固定3毫米瞳孔直径和自然瞳孔大小情况下的波前。计算了每种测试条件下的频域视觉斯特列尔比率(VSOTF)和视网膜图像。在中等聚散距离(1D和2D;p < 0.01)时,主观视力显著提高,与0.17 D相比,仅在5 D时显著下降(p < 0.05)。VSOTF大小与主观视力相关,VSOTF峰值位置与调节误差相关。由于球差导致的明显调节误差与自然瞳孔的调节超前和滞后高度相关(R(2) = 0.80),但与固定3毫米瞳孔的调节超前和滞后不相关(R(2) < 0.00)。与单独的调节误差或高阶像差相比,高阶像差和调节误差的组合改善了视网膜图像质量。瞳孔大小和高阶像差在ASRF中起重要作用。

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