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Simultaneous multimodal ophthalmic imaging using swept-source spectrally encoded scanning laser ophthalmoscopy and optical coherence tomography

机译:使用扫频光谱扫描激光眼底镜和光学相干断层扫描技术进行多模态同时眼科成像

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摘要

Scanning laser ophthalmoscopy (SLO) benefits diagnostic imaging and therapeutic guidance by allowing for high-speed en face imaging of retinal structures. When combined with optical coherence tomography (OCT), SLO enables real-time aiming and retinal tracking and provides complementary information for post-acquisition volumetric co-registration, bulk motion compensation, and averaging. However, multimodality SLO-OCT systems generally require dedicated light sources, scanners, relay optics, detectors, and additional digitization and synchronization electronics, which increase system complexity. Here, we present a multimodal ophthalmic imaging system using swept-source spectrally encoded scanning laser ophthalmoscopy and optical coherence tomography (SS-SESLO-OCT) for in vivo human retinal imaging. SESLO reduces the complexity of en face imaging systems by multiplexing spatial positions as a function of wavelength. SESLO image quality benefited from single-mode illumination and multimode collection through a prototype double-clad fiber coupler, which optimized scattered light throughput and reduce speckle contrast while maintaining lateral resolution. Using a shared 1060 nm swept-source, shared scanner and imaging optics, and a shared dual-channel high-speed digitizer, we acquired inherently co-registered en face retinal images and OCT cross-sections simultaneously at 200 frames-per-second.
机译:扫描激光检眼镜(SLO)通过允许对视网膜结构进行高速全脸成像,有助于诊断成像和治疗指导。当与光学相干断层扫描(OCT)结合使用时,SLO可以实现实时瞄准和视网膜跟踪,并为采集后的体积共配准,整体运动补偿和求平均提供补充信息。但是,多模态SLO-OCT系统通常需要专用光源,扫描仪,中继光学器件,检测器以及其他数字化和同步电子设备,这会增加系统的复杂性。在这里,我们介绍了一种多模态眼科成像系统,该系统使用扫频源光谱编码扫描激光检眼镜和光学相干断层扫描(SS-SESLO-OCT)进行体内人视网膜成像。 SESLO通过将空间位置作为波长的函数进行复用,降低了面部成像系统的复杂性。 SESLO图像质量得益于原型双包层光纤耦合器的单模照明和多模采集,该耦合器可优化散射光通量并降低斑点对比度,同时保持横向分辨率。使用共享的1060 nm扫频光源,共享的扫描仪和成像光学器件以及共享的双通道高速数字化仪,我们以每秒200帧的速度同时获取了固有共配的全脸视网膜图像和OCT横截面。

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