Leube Alexander, Kostial Stephanie, Alex Ochakovski G, Ohlendorf Arne, Wahl Siegfried
Institute for Ophthalmic Research, Eberhard Karls University of Tuebingen, Germany.
Institute for Ophthalmic Research, Eberhard Karls University of Tuebingen, Germany; Technology and Innovation, Carl Zeiss Vision International GmbH, Aalen, Germany; Ophthalmic Optics and Psychophysics, University of Applied Sciences Aalen, Germany.
Vision Res. 2018 Feb;143:52-57. doi: 10.1016/j.visres.2017.12.003. Epub 2017 Dec 28.
The purpose of the study was to investigate the sign-dependent response to real and simulated spherical defocus on the visual acuity under monochromatic light conditions. The investigation included 15 myopic participants with a mean spherical equivalent error of -2.98 ± 2.17 D. Visual acuity (VA) was tested with and without spherical defocus using the source method (simulated defocus) and the observer method (lens-induced defocus) in a range of ±3.0 D in 1.0 D steps. VA was assessed using Landolt C's, while the threshold was determined with an adaptive staircase procedure. Monochromatic light conditions were achieved using band pass filters with a wavelength of 450 ± 2 nm, 530 ± 2 nm and 630 ± 2 nm. Results showed that the reduction of VA was significantly different under blue lighting conditions, when compared to the green and red light conditions. No significant difference in the reduction of the VA was found between the positive and the negative sign of defocus for all lighting conditions. The agreement for the VA between the source and observer method was significantly dependent on the wavelength as well as on the level of defocus. To conclude, under monochromatic light conditions, myopes show a symmetric sign-dependency regarding the influence of spherical defocus on visual acuity. The observed results indicate that the human visual system is capable of integrating the chromatic differences in refraction to distinguish between the signs of defocus.
该研究的目的是在单色光条件下,研究对真实和模拟球面离焦的符号依赖性视力反应。该调查包括15名近视参与者,平均等效球镜误差为-2.98±2.17D。使用源头法(模拟离焦)和观察者法(透镜诱导离焦)在±3.0D范围内以1.0D步长测试有无球面离焦时的视力(VA)。使用兰道环C评估视力,同时用自适应阶梯程序确定阈值。使用波长为450±2nm、530±2nm和630±2nm的带通滤波器实现单色光条件。结果表明,与绿光和红光条件相比,蓝光条件下视力下降显著不同。在所有光照条件下,离焦正负号之间的视力下降没有显著差异。源头法和观察者法之间视力的一致性显著取决于波长以及离焦程度。总之,在单色光条件下,近视者在球面离焦对视力的影响方面表现出对称的符号依赖性。观察结果表明,人类视觉系统能够整合折射中的色差以区分离焦的正负号。