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Enhanced Grid-Based Visual Analysis of Retinal Layer Thickness with Optical Coherence Tomography ?

机译:基于光学相干断层扫描的增强型基于网格的视网膜层厚度可视化分析

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Optical coherence tomography enables high-resolution 3D imaging of retinal layers in the human eye. The thickness of the layers is commonly assessed to understand a variety of retinal and systemic disorders. Yet, the thickness data are complex and currently need to be considerably reduced prior to further processing and analysis. This leads to a loss of information on localized variations in thickness, which is important for early detection of certain retinal diseases. We propose an enhanced grid-based reduction and exploration of retinal thickness data. Alternative grids are computed, their representation quality is rated, and best fitting grids for given thickness data are suggested. Selected grids are then visualized, adapted, and compared at different levels of granularity. A visual analysis tool bundles all computational, visual, and interactive means in a flexible user interface. We demonstrate the utility of our tool in a complementary analysis procedure, which eases the evaluation of ophthalmic study data. Ophthalmologists successfully applied our solution to study localized variations in thickness of retinal layers in patients with diabetes mellitus.
机译:光学相干断层扫描技术可实现人眼视网膜层的高分辨率3D成像。通常评估各层的厚度以了解各种视网膜和全身性疾病。然而,厚度数据是复杂的,并且当前需要在进一步处理和分析之前大大减少厚度数据。这导致有关局部厚度变化的信息丢失,这对于早期检测某些视网膜疾病很重要。我们提出了一种增强的基于网格的视网膜厚度数据减少和探索方法。计算出替代网格,评估其表示质量,并建议针对给定厚度数据的最佳拟合网格。然后在不同的粒度级别上可视化,调整和比较选定的网格。视觉分析工具在灵活的用户界面中捆绑了所有计算,视觉和交互方式。我们在补充分析程序中证明了我们工具的实用性,从而简化了眼科研究数据的评估。眼科医生成功地将我们的解决方案应用于研究糖尿病患者视网膜层厚度的局部变化。

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