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Adaptive optics scanning laser ophthalmoscope imaging: technology update

机译:自适应光学扫描激光检眼镜成像:技术更新

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摘要

Adaptive optics (AO) retinal imaging has become very popular in the past few years, especially within the ophthalmic research community. Several different retinal techniques, such as fundus imaging cameras or optical coherence tomography systems, have been coupled with AO in order to produce impressive images showing individual cell mosaics over different layers of the in vivo human retina. The combination of AO with scanning laser ophthalmoscopy has been extensively used to generate impressive images of the human retina with unprecedented resolution, showing individual photoreceptor cells, retinal pigment epithelium cells, as well as microscopic capillary vessels, or the nerve fiber layer. Over the past few years, the technique has evolved to develop several different applications not only in the clinic but also in different animal models, thanks to technological developments in the field. These developments have specific applications to different fields of investigation, which are not limited to the study of retinal diseases but also to the understanding of the retinal function and vision science. This review is an attempt to summarize these developments in an understandable and brief manner in order to guide the reader into the possibilities that AO scanning laser ophthalmoscopy offers, as well as its limitations, which should be taken into account when planning on using it.
机译:自适应光学(AO)视网膜成像在过去几年中非常流行,特别是在眼科研究界。几种不同的视网膜技术(例如眼底成像相机或光学相干断层扫描系统)已与AO结合使用,以产生令人印象深刻的图像,显​​示出体内人视网膜不同层上的单个细胞镶嵌。 AO与扫描激光检眼镜的组合已被广泛用于生成具有前所未有分辨率的令人印象深刻的人类视网膜图像,显示单个感光细胞,视网膜色素上皮细胞以及显微毛细血管或神经纤维层。在过去的几年中,由于该领域的技术发展,该技术已经发展为不仅在临床领域而且还在不同的动物模型中开发了几种不同的应用程序。这些发展在不同的研究领域具有特定的应用,不仅限于视网膜疾病的研究,而且还包括对视网膜功能和视觉科学的理解。这篇综述试图以一种易于理解和简短的方式总结这些发展,以引导读者了解AO扫描激光检眼镜的可能性以及它的局限性,在计划使用时应予以考虑。

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