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Closed-loop adaptive optics using a spatial light modulator for sensing and compensating of optical aberrations in ophthalmic applications

机译:使用空间光调制器的闭环自适应光学器件,用于感测和补偿眼科应用中的光学像差

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摘要

Sensing and compensating of optical aberrations in closed-loop mode using a single spatial light modulator (SLM) for ophthalmic applications is demonstrated. Notwithstanding the disadvantages of the SLM, in certain cases, this multitasking capability of the device makes it advantageous over existing deformable mirrors (DMs), which are expensive and in general used for aberration compensation alone. A closed-loop adaptive optics (AO) system based on a single SLM was built. Beam resizing optics were used to utilize the large active area of the device and hence make it feasible to generate 137 active subapertures for wavefront sensing. While correcting Zernike aberrations up to fourth order introduced with the help of a DM (for testing purposes), diffraction-limited resolution was achieved. It is shown that matched filter and intensity-weighted centroiding techniques stand out among others. Closed-loop wavefront correction of aberrations in backscattered light from the eyes of three healthy human subjects was demonstrated after satisfactory results were obtained using an artificial eye, which was simulated with a short focal length lens and a sheet of white paper as diffuser. It is shown that the closed-loop AO system based on a single SLM is capable of diffraction-limited correction for ophthalmic applications.
机译:演示了在闭环模式下使用单个空间光调制器(SLM)进行眼科应用的光学像差传感和补偿。尽管SLM具有缺点,但在某些情况下,该设备的这种多任务处理能力使其优于现有的可变形反射镜(DM),后者昂贵且通常仅用于像差补偿。建立了基于单个SLM的闭环自适应光学(AO)系统。使用光束调整大小的光学器件来利用设备的大有效面积,因此使其可行以产生137个有源子孔径用于波前感测。在借助DM(用于测试目的)将Zernike像差校正至第四级的同时,获得了衍射极限分辨率。结果表明,在其他方面,匹配的滤波器和强度加权质心技术非常突出。在使用短焦距镜头和一张白纸作为漫射器模拟的人造眼获得了令人满意的结果之后,证明了来自三个健康人类受试者的眼睛的反向散射光中像差的闭环波前校正。结果表明,基于单个SLM的闭环AO系统能够对眼科应用进行衍射极限校正。

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