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Next Generation High Resolution Adaptive Optics Fundus Imager

机译:下一代高分辨率自适应光学底座成像仪

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The spatial resolution of retinal images is limited by the presence of static and time-varying aberrations present within the eye. An updated High Resolution Adaptive Optics Fundus Imager (HRAOFI) has been built based on the development from the first prototype unit. This entirely new unit was designed and fabricated to increase opto-mechanical integration and ease-of-use through a new user interface. Improved camera systems for the Shack-Hartmann sensor and for the scene image were implemented to enhance the image quality and the frequency of the Adaptive Optics (AO) control loop. An optimized illumination system that uses specific wavelength bands was applied to increase the specificity of the images. Sample images of clinical trials of retinas, taken with and without the system, are shown. Data on the performance of this system will be presented, demonstrating the ability to calculate near diffraction-limited images.
机译:视网膜图像的空间分辨率受到眼内内存在的静态和时变差的限制。已基于从第一个原型单元的开发构建更新的高分辨率自适应光学基底Image er(Hraofi)。这一全新的单位是设计和制作的,以提高光机械集成和通过新用户界面的易用性。实现了用于Shack-Hartmann传感器和用于场景图像的改进的相机系统,以增强自适应光学(AO)控制回路的图像质量和频率。应用了使用特定波长带的优化照明系统来增加图像的特异性。显示了用和没有系统的视网膜临床试验的样本图像。将提出关于该系统性能的数据,证明能够计算近衍射限制图像的能力。

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