Advances in optical coherence tomography (OCT) have enabled noninvasive imaging of substructures of the human retina with high spatial resolution. OCT examinations are now a standard procedure in clinics and an integral part of ophthalmic research. The interpretation of the OCT helps ophthalmologists understand the impact of various retinal and systemic diseases on the structure of the retina in a way not previously possible. In the early stages of retinal diseases, however, the identification and analysis of small and localized substructural changes in the retina remains a challenge. We present an overview of novel visual analytics approaches for the interactive exploration of early retinal changes in single and multiple patients, the comparison of the changes with normative data, and automated quantification and measurement of diagnosis-relevant information. We developed these approaches in close collaboration with ophthalmology researchers and industry experts from a leading OCT device manufacturer. As a result, they not only significantly reduced the time and effort required for OCT data analysis, especially in the context of cross-sectional studies, but have also led to several new discoveries published in biomedical journals.
翻译:光学一致性断层摄影的进步使得能够对具有高空间分辨率的人类视网膜亚结构进行非侵入性成像; OCT检查现在是诊所的标准程序,也是眼科研究的一个组成部分; OCT的解释有助于眼科医生以以前不可能的方式理解各种视网膜和系统疾病对视网膜结构的影响; 然而,在视网膜疾病的早期阶段,查明和分析视网膜中小型和局部的亚结构变化仍是一项挑战; 我们概述了互动探索单一和多个病人早期视网膜变化的新视觉分析方法,将变化与规范性数据进行比较,并对诊断相关信息进行自动化量化和计量; 我们与主要OCT装置制造商的眼科研究人员和行业专家密切合作开发了这些方法; 其结果不仅大大减少了对视网膜数据分析所需的时间和努力,特别是在跨部门研究方面,而且还导致在生物医学期刊上发表一些新的发现。