首页> 外文会议>Conference on Ophthalmic Technologies; 20080119-21; San Jose,CA(US) >Ultra-high resolution adaptive optics - optical coherence tomography for in vivo imaging of healthy and diseased retinal structures
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Ultra-high resolution adaptive optics - optical coherence tomography for in vivo imaging of healthy and diseased retinal structures

机译:超高分辨率自适应光学器件-用于健康和患病视网膜结构体内成像的光学相干断层扫描

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Ultra-high isotropic resolution imaging of retinal structures was made possible with an adaptive optics system using dual deformable mirrors and a Fourier-domain optical coherence tomography (Fd-OCT) system with correction for longitudinal chromatic aberration. This system was used to image microscopic retinal structures of healthy as well as diseased retinas in vivo. The improved resolution and contrast enhanced visualization of morphological structures in the retina can be clearly seen. The benefits of this instrument are apparent from comparison of new images with those acquired using a previous generation AO-OCT instrument. Big change in the appearance of speckle field (reduction in speckle size) can be observed as well. Additionally, further improvements in volumetric data acquisition and image representation will be discussed. This includes creation of large Field of View (FOV) AO-OCT volume from multiple sub-volumes and its visualization. Also techniques and results of reducing speckle contrast by averaging multiple B-scans will be presented.
机译:使用双变形镜和傅里叶域光学相干断层扫描(Fd-OCT)系统并进行纵向色差校正的自适应光学系统使视网膜结构的超高全向分辨率成像成为可能。该系统用于在体内对健康以及患病的视网膜的显微视网膜结构进行成像。可以清楚地看到提高的分辨率和对比度增强的视网膜形态结构的可视化。通过将新图像与使用上一代AO-OCT仪器获得的图像进行比较,可以明显看出该仪器的优势。还可以观察到斑点场的外观发生很大变化(斑点尺寸减小)。另外,将讨论体积数据采集和图像表示的进一步改进。这包括从多个子体积中创建大视场(FOV)AO-OCT体积及其可视化。还将介绍通过平均多个B扫描来减少斑点对比度的技术和结果。

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