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Integrated adaptive optics optical coherence tomography and adaptive optics scanning laser ophthalmoscope system for simultaneous cellular resolution in vivo retinal imaging

机译:集成的自适应光学相干断层扫描和自适应光学扫描激光检眼镜系统用于同时进行体内视网膜成像的细胞分辨

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摘要

We describe an ultrahigh-resolution (UHR) retinal imaging system that combines adaptive optics Fourier-domain optical coherence tomography (AO-OCT) with an adaptive optics scanning laser ophthalmoscope (AO-SLO) to allow simultaneous data acquisition by the two modalities. The AO-SLO subsystem was integrated into the previously described AO-UHR OCT instrument with minimal changes to the latter. This was done in order to ensure optimal performance and image quality of the AO- UHR OCT. In this design both imaging modalities share most of the optical components including a common AO-subsystem and vertical scanner. One of the benefits of combining Fd-OCT with SLO includes automatic co-registration between two acquisition channels for direct comparison between retinal structures imaged by both modalities (e.g., photoreceptor mosaics or microvasculature maps). Because of differences in the detection scheme of the two systems, this dual imaging modality instrument can provide insight into retinal morphology and potentially function, that could not be accessed easily by a single system. In this paper we describe details of the components and parameters of the combined instrument, including incorporation of a novel membrane magnetic deformable mirror with increased stroke and actuator count used as a single wavefront corrector. We also discuss laser safety calculations for this multimodal system. Finally, retinal images acquired in vivo with this system are presented.
机译:我们描述了一种超高分辨率(UHR)视网膜成像系统,该系统将自适应光学傅里叶域光学相干断层扫描(AO-OCT)与自适应光学扫描激光检眼镜(AO-SLO)相结合,以通过两种方式同时进行数据采集。 AO-SLO子系统已集成到先前描述的AO-UHR OCT仪器中,对后者的更改却很小。这样做是为了确保AO-UHR OCT的最佳性能和图像质量。在这种设计中,这两种成像方式共享大多数光学组件,包括一个普通的AO子系统和垂直扫描仪。将Fd-OCT与SLO相结合的好处之一包括两个获取通道之间的自动共配准,以直接比较两种方式成像的视网膜结构(例如,感光体镶嵌或微脉管系统图)。由于两个系统的检测方案不同,因此这种双重成像形式的仪器可以洞察视网膜的形态和潜在功能,而单个系统无法轻松访问。在本文中,我们描述了组合仪器的组件和参数的详细信息,包括并入具有增加的行程和执行器数量的新型膜式磁性可变形反射镜,用作单个波前校正器。我们还将讨论此多峰系统的激光安全性计算。最后,介绍了使用该系统在体内获取的视网膜图像。

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