首页> 外文会议>Ophthalmic technologies XXVI >Optical Design of a Novel Instrument that uses the Hartmann-Shack Sensor and Zernike Polynomials to Measure and Simulate Customized Refraction Correction Surgery Outcomes and Patient Satisfaction
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Optical Design of a Novel Instrument that uses the Hartmann-Shack Sensor and Zernike Polynomials to Measure and Simulate Customized Refraction Correction Surgery Outcomes and Patient Satisfaction

机译:使用Hartmann-Shack传感器和Zernike多项式来测量和模拟定制的屈光矫正手术结果和患者满意度的新型仪器的光学设计

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An optical system that conjugates the patient's pupil to the plane of a Hartmann-Shack (HS) wavefront sensor has been simulated using optical design software. And an optical bench prototype is mounted using mechanical eye device, beam splitter, illumination system, lenses, mirrors, mirrored prism, movable mirror, wavefront sensor and camera CCD. The mechanical eye device is used to simulate aberrations of the eye. From this device the rays are emitted and travelled by the beam splitter to the optical system. Some rays fall on the camera CCD and others pass in the optical system and finally reach the sensor. The eye models based on typical in vivo eye aberrations is constructed using the optical design software Zemax. The computer-aided outcomes of each HS images for each case are acquired, and these images are processed using customized techniques. The simulated and real images for low order aberrations are compared using centroid coordinates to assure that the optical system is constructed precisely in order to match the simulated system. Afterwards a simulated version of retinal images is constructed to show how these typical eyes would perceive an optotype positioned 20 ft away. Certain personalized corrections are allowed by eye doctors based on different Zernike polynomial values and the optical images are rendered to the new parameters. Optical images of how that eye would see with or without corrections of certain aberrations are generated in order to allow which aberrations can be corrected and in which degree. The patient can then "personalize" the correction to their own satisfaction. This new approach to wavefront sensing is a promising change in paradigm towards the betterment of the patient-physician relationship.
机译:使用光学设计软件已经模拟了将患者瞳孔与Hartmann-Shack(HS)波前传感器平面共轭的光学系统。使用机械眼设备,分束器,照明系统,透镜,镜子,镜面棱镜,可移动镜,波前传感器和相机CCD来安装光具座原型。机械眼部设备用于模拟眼睛的像差。射线从该设备发出并由分束器传播到光学系统。一些光线落在相机CCD上,其他光线则通过光学系统,最后到达传感器。使用光学设计软件Zemax构建基于典型体内眼睛像差的眼睛模型。获取每种情况下每个HS图像的计算机辅助结果,并使用定制技术处理这些图像。使用质心坐标比较低阶像差的仿真图像和真实图像,以确保光学系统的构造精确,以匹配仿真系统。然后,构建视网膜图像的模拟版本,以显示这些典型的眼睛如何感知位于20英尺外的视标。眼科医生可以根据不同的Zernike多项式值进行某些个性化校正,并将光学图像渲染为新参数。产生具有或不具有某些像差校正的那只眼睛将如何看的光学图像,以允许可以校正哪些像差以及以何种程度校正。然后,患者可以“个性化”校正以使其满意。这种波前感测的新方法是朝着改善医患关系的典范进行了有希望的改变。

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