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Ultrahigh speed Spectral / Fourier domain OCT ophthalmic imaging at 70000 to 312500 axial scans per second

机译:每秒70000至312500轴向扫描的超高速光谱/傅里叶域OCT眼科成像

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摘要

We demonstrate ultrahigh speed spectral / Fourier domain optical coherence tomography (OCT) using an ultrahigh speed CMOS line scan camera at rates of 70,000 - 312,500 axial scans per second. Several design configurations are characterized to illustrate trade-offs between acquisition speed, resolution, imaging range, sensitivity and sensitivity roll-off performance. Ultrahigh resolution OCT with 2.5 - 3.0 micron axial image resolution is demonstrated at ∼ 100,000 axial scans per second. A high resolution spectrometer design improves sensitivity roll-off and imaging range performance, trading off imaging speed to 70,000 axial scans per second. Ultrahigh speed imaging at >300,000 axial scans per second with standard image resolution is also demonstrated. Ophthalmic OCT imaging of the normal human retina is investigated. The high acquisition speeds enable dense raster scanning to acquire densely sampled volumetric three dimensional OCT (3D-OCT) data sets of the macula and optic disc with minimal motion artifacts. Imaging with ∼ 8 - 9 micron axial resolution at 250,000 axial scans per second, a 512 × 512 × 400 voxel volumetric 3D-OCT data set can be acquired in only ∼ 1.3 seconds. Orthogonal registration scans are used to register OCT raster scans and remove residual axial eye motion, resulting in 3D-OCT data sets which preserve retinal topography. Rapid repetitive imaging over small volumes can visualize small retinal features without motion induced distortions and enables volume registration to remove eye motion. Cone photoreceptors in some regions of the retina can be visualized without adaptive optics or active eye tracking. Rapid repetitive imaging of 3D volumes also provides dynamic volumetric information (4D-OCT) which is shown to enhance visualization of retinal capillaries and should enable functional imaging. Improvements in the speed and performance of 3D-OCT volumetric imaging promise to enable earlier diagnosis and improved monitoring of disease progression and response to therapy in ophthalmology, as well as have a wide range of research and clinical applications in other areas.
机译:我们演示了使用超高速CMOS线扫描相机以每秒70,000-312,500轴向扫描的速率进行的超高速光谱/傅里叶域光学相干断层扫描(OCT)。表征了几种设计配置,以说明采集速度,分辨率,成像范围,灵敏度和灵敏度下降性能之间的权衡。在每秒约100,000次轴向扫描中证明了具有2.5-3.0微米轴向图像分辨率的超高分辨率OCT。高分辨率光谱仪设计改善了灵敏度下降和成像范围性能,将成像速度折衷为每秒70,000次轴向扫描。还显示了每秒超300,000次轴向扫描和标准图像分辨率的超高速成像。研究了正常人视网膜的眼科OCT成像。高采集速度使密集光栅扫描能够以最少的运动伪影来采集黄斑和光盘的密集采样体积三维OCT(3D-OCT)数据集。在每秒250,000次轴向扫描的情况下,以约8-9微米的轴向分辨率进行成像,仅约1.3秒即可获得512×512×400体素体积3D-OCT数据集。正交配准扫描用于配准OCT光栅扫描并消除残留的轴向眼球运动,从而产生保留视网膜地形的3D-OCT数据集。小体积的快速重复成像可以可视化小的视网膜特征,而不会引起运动引起的畸变,并且可以进行体积对准以消除眼睛的运动。无需自适应光学系统或主动眼动追踪功能,就可以看到视网膜某些区域的锥体感光体。 3D体积的快速重复成像还提供了动态体积信息(4D-OCT),该信息可增强视网膜毛细血管的可视化效果,并应能够进行功能性成像。 3D-OCT体积成像的速度和性能的提高有望实现对疾病的进展和眼科治疗反应的早期诊断和监测,以及在其他领域的广泛研究和临床应用。

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