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视网膜成像在神经退行性疾病中的过去、现在和未来作用。

Past, present and future role of retinal imaging in neurodegenerative disease.

机构信息

USC Roski Eye Institute and Department of Ophthalmology, Keck School of Medicine of University of Southern California, Los Angeles, CA, USA; USC Ginsburg Institute for Biomedical Therapeutics, Keck School of Medicine of University of Southern California, Los Angeles, CA, USA.

Department of Ophthalmology and Visual Sciences, University of Maryland School of Medicine, Baltimore, MD, USA.

出版信息

Prog Retin Eye Res. 2021 Jul;83:100938. doi: 10.1016/j.preteyeres.2020.100938. Epub 2021 Jan 15.

Abstract

Retinal imaging technology is rapidly advancing and can provide ever-increasing amounts of information about the structure, function and molecular composition of retinal tissue in humans in vivo. Most importantly, this information can be obtained rapidly, non-invasively and in many cases using Food and Drug Administration-approved devices that are commercially available. Technologies such as optical coherence tomography have dramatically changed our understanding of retinal disease and in many cases have significantly improved their clinical management. Since the retina is an extension of the brain and shares a common embryological origin with the central nervous system, there has also been intense interest in leveraging the expanding armamentarium of retinal imaging technology to understand, diagnose and monitor neurological diseases. This is particularly appealing because of the high spatial resolution, relatively low-cost and wide availability of retinal imaging modalities such as fundus photography or OCT compared to brain imaging modalities such as magnetic resonance imaging or positron emission tomography. The purpose of this article is to review and synthesize current research about retinal imaging in neurodegenerative disease by providing examples from the literature and elaborating on limitations, challenges and future directions. We begin by providing a general background of the most relevant retinal imaging modalities to ensure that the reader has a foundation on which to understand the clinical studies that are subsequently discussed. We then review the application and results of retinal imaging methodologies to several prevalent neurodegenerative diseases where extensive work has been done including sporadic late onset Alzheimer's Disease, Parkinson's Disease and Huntington's Disease. We also discuss Autosomal Dominant Alzheimer's Disease and cerebrovascular small vessel disease, where the application of retinal imaging holds promise but data is currently scarce. Although cerebrovascular disease is not generally considered a neurodegenerative process, it is both a confounder and contributor to neurodegenerative disease processes that requires more attention. Finally, we discuss ongoing efforts to overcome the limitations in the field and unmet clinical and scientific needs.

摘要

视网膜成像技术正在迅速发展,能够提供越来越多关于人类活体视网膜组织的结构、功能和分子组成的信息。最重要的是,这些信息可以快速、无创地获得,并且在许多情况下可以使用经食品和药物管理局批准的、商业上可获得的设备获得。光学相干断层扫描等技术极大地改变了我们对视网膜疾病的认识,在许多情况下,显著改善了其临床管理。由于视网膜是大脑的延伸,与中枢神经系统具有共同的胚胎起源,因此人们也强烈希望利用不断扩大的视网膜成像技术手段来了解、诊断和监测神经退行性疾病。这特别吸引人,因为与脑成像模式(如磁共振成像或正电子发射断层扫描)相比,眼底照相或 OCT 等视网膜成像模式具有较高的空间分辨率、相对较低的成本和广泛的可用性。本文的目的是通过提供文献中的实例,并详细阐述局限性、挑战和未来方向,综述和综合当前神经退行性疾病中视网膜成像的研究。我们首先提供最相关的视网膜成像模式的一般背景,以确保读者有一个基础来理解随后讨论的临床研究。然后,我们回顾了视网膜成像方法在几种常见的神经退行性疾病中的应用和结果,其中包括散发性晚发性阿尔茨海默病、帕金森病和亨廷顿病。我们还讨论了常染色体显性阿尔茨海默病和脑血管小血管疾病,其中视网膜成像的应用有很大的希望,但目前数据很少。虽然脑血管疾病通常不被认为是神经退行性过程,但它既是神经退行性疾病过程的混杂因素,也是其促成因素,需要更多的关注。最后,我们讨论了克服该领域局限性和未满足的临床和科学需求的正在进行的努力。

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