Martin Jesson, Vasudevan Balamurali, Himebaugh Nikole, Bradley Arthur, Thibos Larry
Indiana University, School of Optometry, Bloomington, IN 47405, USA.
Vision Res. 2011 Sep 1;51(17):1932-40. doi: 10.1016/j.visres.2011.07.006. Epub 2011 Jul 14.
We seek unbiased methods for estimating the target vergence required to maximize visual acuity based on wavefront aberration measurements. Experiments were designed to minimize the impact of confounding factors that have hampered previous research. Objective wavefront refractions and subjective acuity refractions were obtained for the same monochromatic wavelength. Accommodation and pupil fluctuations were eliminated by cycloplegia. Unbiased subjective refractions that maximize visual acuity for high contrast letters were performed with a computer controlled forced choice staircase procedure, using 0.125 diopter steps of defocus. All experiments were performed for two pupil diameters (3mm and 6mm). As reported in the literature, subjective refractive error does not change appreciably when the pupil dilates. For 3mm pupils most metrics yielded objective refractions that were about 0.1D more hyperopic than subjective acuity refractions. When pupil diameter increased to 6mm, this bias changed in the myopic direction and the variability between metrics also increased. These inaccuracies were small compared to the precision of the measurements, which implies that most metrics provided unbiased estimates of refractive state for medium and large pupils. Thus a variety of image quality metrics may be used to determine ocular refractive state for monochromatic (635nm) light, thereby achieving accurate results without the need for empirical correction factors.
我们寻求基于波前像差测量来估计使视力最大化所需目标聚散度的无偏方法。设计实验以尽量减少阻碍先前研究的混杂因素的影响。针对相同单色波长获取客观波前屈光和主观视力屈光。通过睫状肌麻痹消除调节和瞳孔波动。使用计算机控制的强制选择阶梯程序,以0.125屈光度的散焦步长,进行使高对比度字母视力最大化的无偏主观屈光。所有实验针对两种瞳孔直径(3毫米和6毫米)进行。如文献报道,瞳孔散大时主观屈光不正变化不明显。对于3毫米的瞳孔,大多数指标得出的客观屈光比主观视力屈光约远视0.1D。当瞳孔直径增加到6毫米时,这种偏差向近视方向变化,且指标间的变异性也增加。与测量精度相比,这些不准确性较小,这意味着大多数指标为中、大瞳孔的屈光状态提供了无偏估计。因此,可使用多种图像质量指标来确定单色(635纳米)光的眼屈光状态,从而无需经验校正因子即可获得准确结果。