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In-vivo digital wavefront sensing using swept source OCT

机译:使用扫频源OCT的体内数字波前感测

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摘要

Sub-aperture based digital adaptive optics is demonstrated in a fiber based point scanning optical coherence tomography system using a 1060 nm swept source laser. To detect optical aberrations in-vivo, a small lateral field of view of ~150 × 150 μm2 is scanned on the sample at a high volume rate of 17 Hz (~1.3 kHz B-scan rate) to avoid any significant lateral and axial motion of the sample, and is used as a “guide star” for the sub-aperture based DAO. The proof of principle is demonstrated using a micro-beads phantom sample, wherein a significant root mean square wavefront error (RMS WFE) of 1.48 waves (> 1μm) is detected. In-vivo aberration measurement with a RMS WFE of 0.33 waves, which is ~5 times higher than the Marechal’s criterion of 1/14 waves for the diffraction limited performance, is shown for a human retinal OCT. Attempt has been made to validate the experimental results with the conventional Shack-Hartmann wavefront sensor within reasonable limitations.
机译:在使用1060 nm扫频源激光器的基于光纤的点扫描光学相干断层扫描系统中,演示了基于子孔径的数字自适应光学系统。为了检测体内光学像差,以17 Hz的高体积速率(〜1.3 kHz B扫描速率)在样品上扫描了约150×150μm 2 的小侧视场避免样品发生任何明显的横向和轴向运动,并用作基于子孔径的DAO的“导向星”。使用微珠体模样本证明了原理证明,其中检测到1.48波(>1μm)的显着的均方根波前误差(RMS WFE)。对于人眼OCT,显示了具有0.33波RMS WFE的体内像差测量,这比Marechal的1/14波判据在衍射受限性能上的标准高约5倍。已经尝试在合理的限制范围内使用传统的Shack-Hartmann波前传感器验证实验结果。

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