Bégel Louis, Galstian Tigran
Center for Optics, Photonics and Laser, Department of Physics, Engineering Physics and Optics, Université Laval, Pavillon d'Optique-Photonique, 2375 Rue de la Terrasse, Quebec G1V 0A6, Canada.
TLCL and LensVector inc., 2375 Rue de la Terrasse, Quebec G1V 0A6, Canada.
Biomed Opt Express. 2025 May 21;16(6):2440-2458. doi: 10.1364/BOE.557747. eCollection 2025 Jun 1.
A large aperture matrix of tunable liquid crystal lenses (MTLCL) is used for dynamic presbyopia correction. The special electrode design and driving method allow the activation of local lenses at arbitrary lateral positions of the MTLCL. First, the study of tunable wavefronts, which can be generated by such a device, is presented. Then, the image quality at different viewing angles and distances is quantified. A driving algorithm has also been developed to increase the speed of focusing. It is shown that this device may provide continuous focus tunability (from 0 to 2.5 diopters), react within 0.5 s, operate with relatively low voltages (<5 V), and enable diffraction-limited on-axis aberrations. Finally, the results of a comprehensive evaluation of its performance with human subjects are reported, comparing the visual acuity (VA) achieved by using the approach proposed in this project against the natural human VA for objects in the near field.
一种大孔径可调谐液晶透镜矩阵(MTLCL)用于动态老花眼矫正。特殊的电极设计和驱动方法允许在MTLCL的任意横向位置激活局部透镜。首先,介绍了由这种装置产生的可调谐波前的研究。然后,对不同视角和距离下的图像质量进行了量化。还开发了一种驱动算法来提高聚焦速度。结果表明,该装置可提供连续的焦点可调性(从0到2.5屈光度),在0.5秒内做出反应,以相对较低的电压(<5V)运行,并实现衍射极限的轴上像差。最后,报告了对其在人体受试者上的性能进行全面评估的结果,比较了使用本项目提出的方法所获得的视力(VA)与人体在近场中观察物体的自然视力。