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Experimental validations of a tunable-lens-based visual demonstrator of multifocal corrections

机译:基于可调透镜的多焦点矫正视觉演示器的实验验证

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摘要

The Simultaneous Vision simulator (SimVis) is a visual demonstrator of multifocal lens designs for prospective intraocular lens replacement surgery patients and contact lens wearers. This programmable device employs a fast tunable lens and works on the principle of temporal multiplexing. The SimVis input signal is tailored to mimic the optical quality of the multifocal lens using the theoretical SimVis temporal profile, which is evaluated from the through-focus Visual Strehl ratio metric of the multifocal lens. In this paper, for the first time, focimeter-verified on-bench validations of multifocal simulations using SimVis are presented. Two steps are identified as being critical to accurate SimVis simulations. Firstly, a new iterative approach is presented that improves the accuracy of the theoretical SimVis temporal profile for three different multifocal intraocular lens designs – diffractive trifocal, refractive segmented bifocal, and refractive extended depth of focus, while retaining a low sampling. Secondly, a fast focimeter is used to measure the step response of the tunable lens, and the input signal is corrected to include the effects of the transient behavior of the tunable lens. It was found that the root-mean-square of the difference between the estimated through-focus Visual Strehl ratio of the multifocal lens and SimVis is not greater than 0.02 for all the tested multifocal designs.
机译:同时视力模拟器(SimVis)是针对未来人工晶状体置换手术患者和隐形眼镜佩戴者的多焦点镜片设计的视觉演示器。该可编程设备采用快速可调镜头,并按照时间复用原理工作。 SimVis输入信号经过调整,可使用理论SimVis时间轮廓模拟多焦点镜片的光学质量,该时间轮廓是通过多焦点镜片的全焦点视觉斯特雷尔比率度量来评估的。在本文中,首次提出了使用SimVis通过焦度计验证的多焦点模拟的在线验证。确定了两个步骤对于准确的SimVis仿真至关重要。首先,提出了一种新的迭代方法,该方法提高了三种不同的多焦点人工晶状体设计(衍射三焦点,折射分段双焦点和折射扩展焦深)的理论SimVis时间剖面的准确性,同时保留了较低的采样率。其次,使用快速聚焦计测量可调透镜的阶跃响应,并校正输入信号以包括可调透镜的瞬态行为的影响。发现对于所有测试的多焦点设计,估计的多焦点镜片的通过焦点视觉斯特雷尔比与SimVis之间的差异的均方根值不大于0.02。

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