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The retinal function imager and clinical applications

机译:视网膜功能成像仪及临床应用

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Background The Retinal Function Imager (RFI) provides in vivo and noninvasive imaging of both the retinal structure and function. Review The RFI can create capillary perfusion maps, measure blood flow velocity, and determine metabolic function including blood oximetry. It can aid clinical diagnosis as well as assess treatment response in several retinal vascular diseases including diabetic retinopathy. Blood flow velocity abnormalities have also been implicated in disease such as age-related macular degeneration and require further investigation. Compared with optical coherence tomography angiography, the RFI produces capillary maps of comparable image quality and wider field of view but it is unable to provide depth-resolved information and has longer image acquisition time. Currently, functional imaging using blood oximetry has limited applications and additional research is required. Conclusion The RFI offers noninvasive, high-resolution imaging of retinal microvasculature by creating capillary perfusion maps. In addition, it is capable of measuring retinal blood velocity directly and performs functional imaging with retinal blood oximetry. Its clinical applications are broad and additional research with functional imaging may potentially lead to diagnosis of diseases and their progression before anatomic abnormalities become evident, but longer image acquisition times may limit its clinical adoption.
机译:背景技术视网膜功能成像仪(RFI)提供了视网膜结构和功能的体内和非侵入性成像。回顾RFI可以创建毛细血管灌注图,测量血流速度并确定包括血氧饱和度在内的代谢功能。它可以帮助临床诊断并评估包括糖尿病性视网膜病在内的几种视网膜血管疾病的治疗反应。血流速度异常还与疾病相关,例如与年龄有关的黄斑变性,还需要进一步研究。与光学相干断层扫描血管造影术相比,RFI产生的毛细管图具有可比的图像质量和更宽的视野,但它无法提供深度解析的信息,并且图像获取时间更长。当前,使用血氧饱和度法进行功能成像的应用受到限制,需要进行更多的研究。结论RFI通过创建毛细血管灌注图可提供视网膜微血管的无创高分辨率成像。此外,它能够直接测量视网膜血流速度,并通过视网膜血氧饱和度测定仪执行功能成像。它的临床应用广泛,功能性影像学的其他研究可能潜在地导致疾病和疾病的诊断,直到解剖学异常明显,但更长的图像采集时间可能会限制其临床应用。

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