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Photoacoustic Ophthalmoscopy: Principle, Application, and Future Directions

机译:光声检眼镜:原理,应用和未来方向。

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Photoacoustic ophthalmoscopy (PAOM) is a novel, hybrid, non-ionizing, and non-invasive imaging technology that has been used to assess the retina. PAOM can provide both anatomic and functional retinal characterizations with high resolution, high sensitivity, high contrast, and a high depth of penetration. Thus, ocular diseases can be precisely detected and visualized at earlier stages, resulting in an improved understanding of pathophysiology, improved management, and the improved monitoring of retinal treatment to prevent vision loss. To better visualize ocular components such as retinal vessels, choroidal vessels, choroidal neovascularization, retinal neovascularization, and the retinal pigment epithelium, an advanced multimodal ocular imaging platform has been developed by a combination of PAOM with other optical imaging techniques such as optical coherence tomography (OCT), scanning laser ophthalmoscopy (SLO), and fluorescence microscopy. The multimodal images can be acquired from a single imaging system and co-registered on the same image plane, enabling an improved evaluation of disease. In this review, the potential application of photoacoustic ophthalmoscopy in both research and clinical diagnosis are discussed as a medical screening technique for the visualization of various ocular diseases. The basic principle and requirements of photoacoustic ocular imaging are introduced. Then, various photoacoustic microscopy imaging systems of the retina in animals are presented. Finally, the future development of PAOM and multimodal imaging is discussed.
机译:光声检眼镜(PAOM)是一种新颖的,混合的,非电离且非侵入性的成像技术,已用于评估视网膜。 PAOM可以提供高分辨率,高灵敏度,高对比度和高穿透深度的解剖学和功能性视网膜表征。因此,可以在早期对眼部疾病进行精确检测和可视化,从而改善了对病理生理的理解,改善了管理,并改善了对视网膜治疗的监测以防止视力丧失。为了更好地可视化眼部组件,例如视网膜血管,脉络膜血管,脉络膜新血管形成,视网膜新血管形成和视网膜色素上皮,PAOM与其他光学成像技术(如光学相干断层扫描( OCT),扫描激光检眼镜(SLO)和荧光显微镜。可以从单个成像系统获取多模态图像,并在同一图像平面上共同注册多模态图像,从而可以更好地评估疾病。在这篇综述中,讨论了光声检眼镜在研究和临床诊断中的潜在应用,作为将各种眼部疾病可视化的医学筛选技术。介绍了光声眼成像的基本原理和要求。然后,提出了动物视网膜的各种光声显微镜成像系统。最后,讨论了PAOM和多峰成像的未来发展。

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