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Measurement of wavefront aberrations and lens deformation in the accommodated eye with optical coherence tomography-equipped wavefront system

机译:配备光学相干层析成像的波前系统测量被检眼中波前像差和晶状体变形

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摘要

To quantitatively approach the relationship between optical changes in an accommodated eye and the geometrical deformation of its crystalline lens, a long scan-depth anterior segment OCT equipped wavefront sensor was developed and integrated with a Badal system. With this system, accommodation was stimulated up to 6.0D in the left eye and also measured in the same eye for three subjects. High correlations between the accommodative responses of refractive power and the radius of the anterior lens surface were found for the three subjects (r>0.98). The change in spherical aberration was also highly correlated with the change in lens thickness (r>0.98). The measurement was very well repeated at a 2nd measurement session on the same day for the three subjects and after two weeks for one subject. The novelty of incorporating the Badal system into the OCT equipped wavefront sensor eliminated axial misalignment of the measurement system with the test eye due to accommodative vergence, as in the contralateral paradigm. The design also allowed the wavefront sensor to capture conjugated sharp Hartmann-Shack images in accommodated eyes to accurately analyze wavefront aberrations. In addition, this design extended the accommodation range up to 10.0D. By using this system, for the first time, we demonstrated linear relationships of the changes between the refractive power and the lens curvature and also between the spherical aberration and the lens thickness during accommodation in vivo. This new system provides an accurate and useful technique to quantitatively study accommodation.
机译:为了定量研究适应性眼部光学变化与其晶状体的几何变形之间的关系,开发了一种具有长扫描深度的前段OCT的波前传感器,并将其与Badal系统集成。使用此系统,左眼的适应性刺激最高可达6.0D,并且在三只受试者的同一只眼中也进行了测量。对于三名受试者,屈光力的调节反应与晶状体前表面的半径之间存在高度相关性(r> 0.98)。球差的变化也与镜片厚度的变化高度相关(r> 0.98)。对于三位受试者,在同一天的第二次测量会议中,对于一位受试者,在两周后,对测量进行了很好的重复。将Badal系统整合到配备OCT的波阵面传感器中的新颖性,消除了由于适应性聚散所导致的测量系统与测试眼的轴向错位,如对侧范式所示。该设计还允许波前传感器在容纳的眼睛中捕获共轭的清晰Hartmann-Shack图像,以准确分析波前像差。此外,这种设计将调节范围扩展到了10.0D。通过使用该系统,我们首次展示了在体内适应过程中折光力与晶状体曲率之间以及球差与晶状体厚度之间变化的线性关系。这个新系统提供了一种准确而有用的技术来定量研究住宿。

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