Manzanera Silvestre, Canovas Carmen, Prieto Pedro M, Artal Pablo
Laboratorio de Optica, Universidad de Murcia (LOUM), Centro de Investigación en Optica y Manofísica (CiOyN), Campus de Espinardo, E-30071 Murcia, Spain.
Opt Express. 2008 May 26;16(11):7748-55. doi: 10.1364/oe.16.007748.
We have designed and assembled an instrument for objective measurement of the eye's wave aberrations for different wavelengths with no modifications in the measurement path. The system consists of a Hartmann-Shack wave-front sensor and a Xe-white-light lamp in combination with a set of interference filters used to sequentially select the measurement wavelength. To show the capabilities of the system and its reliability for measuring at different wavelengths, the ocular aberrations were measured in three subjects at 440, 488, 532, 633 and 694 nm, basically covering the whole visible spectrum. Even for the shortest wavelengths, the illumination level was always several orders of magnitude below the safety limits. The longitudinal chromatic aberration estimates and the wavelength dependence of coma and spherical aberration, as examples of higher-order aberration terms, were compared to the predictions of a chromatic eye model, with good agreement. To our knowledge, this is the first report of a device to objectively determine the spectral fluctuations in the ocular wavefront.
我们设计并组装了一种仪器,可在测量路径无修改的情况下客观测量眼睛在不同波长下的波像差。该系统由一个哈特曼-夏克波前传感器和一个氙白光灯组成,结合一组干涉滤光片用于依次选择测量波长。为了展示该系统的能力及其在不同波长下测量的可靠性,在三名受试者中于440、488、532、633和694纳米处测量了眼像差,基本覆盖了整个可见光谱。即使对于最短波长,照明水平也始终比安全极限低几个数量级。作为高阶像差项的示例,将纵向色差估计值以及彗差和球差的波长依赖性与色眼模型的预测进行了比较,结果吻合良好。据我们所知,这是关于一种客观确定眼波前光谱波动的设备的首次报告。