首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Adaptive optics-optical coherence tomography: optimizing visualization of microscopic retinal structures in three dimensions
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Adaptive optics-optical coherence tomography: optimizing visualization of microscopic retinal structures in three dimensions

机译:自适应光学相干断层扫描:在三个维度上优化显微视网膜结构的可视化

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摘要

Adaptive optics-optical coherence tomography (AO-OCT) permits improved imaging of microscopic retinal structures by combining the high lateral resolution of AO with the high axial resolution of OCT, resulting in the narrowest three-dimensional (3D) point-spread function (PSF) of all in vivo retinal imaging techniques. Owing to the high volumetric resolution of AO-OCT systems, it is now possible, for the first time, to acquire images of 3D cellular structures in the living retina. Thus, with AO-OCT, those retinal structures that are not visible with AO or OCT alone (e.g., bundles of retinal nerve fiber layers, 3D mosaic of photoreceptors, 3D structure of microvasculature, and detailed structure of retinal disruptions) can be visualized. Our current AO-OCT instrumentation uses spectrometer-based Fourier-domain OCT technology and two-deformable-mirror-based AO wavefront correction. We describe image processing methods that help to remove motion artifacts observed in volumetric data, followed by innovative data visualization techniques [including two-dimensional (2D) and 3D representations]. Finally, examples of microscopic retinal structures that are acquired with the University of California Davis AO-OCT system are presented.
机译:自适应光学相干断层扫描(AO-OCT)通过将AO的高横向分辨率与OCT的高轴向分辨率相结合,可以改善显微视网膜结构的成像,从而实现最窄的三维(3D)点扩展功能(PSF) )的所有体内视网膜成像技术。由于AO-OCT系统具有高体积分辨率,现在首次有可能获取活体视网膜中3D细胞结构的图像。因此,使用AO-OCT,可以单独使用AO或OCT看不见的视网膜结构(例如,视网膜神经纤维层束,感光器的3D镶嵌,微血管的3D结构以及视网膜破坏的详细结构)。我们当前的AO-OCT仪器使用基于光谱仪的傅里叶域OCT技术和基于两个可变形镜的AO波前校正。我们描述了有助于去除体积数据中观察到的运动伪影的图像处理方法,然后介绍了创新的数据可视化技术[包括二维(2D)和3D表示形式]。最后,介绍了使用加州大学戴维斯分校AO-OCT系统获取的显微视网膜结构的示例。

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