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Semantics-driven annotation of patient-specific 3D data: a step to assist diagnosis and treatment of rheumatoid arthritis

机译:语义驱动的患者特定3D数据注释:协助类风湿关节炎诊断和治疗的步骤

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In the digital era, patient-specific 3D models (3D-PSMs) are becoming increasingly relevant in computer-assisted diagnosis, surgery training on digital models, or implant design. While advanced imaging and reconstruction techniques can create accurate and detailed 3D models of patients' anatomy, software tools that are able to fully exploit the potential of 3D-PSMs are still far from being satisfactory. In particular, there is still a lack of integrated approaches for extracting, coding, sharing and retrieving medically relevant information from 3D-PSMs and use it concretely as a support to diagnosis and treatment. In this article, we propose the SemAnatomy3D framework, which demonstrates how the ontology-driven annotation of 3D-PSMs and of their anatomically relevant features (parts of relevance) can assist clinicians to document more effectively pathologies and their evolution. We exemplify the idea in the context of the diagnosis of rheumatoid arthritis of the hand district, and show how feature extraction tools and semantic 3D annotation can provide a rich characterization of anatomical landmarks (e.g., articular facets, prominent features, ligament attachments) and pathological markers (erosions, bone loss). The core contributions are an ontology-driven part-based annotation method for the 3D-PSMs and a novel automatic localization of erosion and quantification of the OMERACT RAMRIS erosion score. Finally, our results have been compared against a medical ground truth.
机译:在数字时代,针对患者的3D模型(3D-PSM)在计算机辅助诊断,数字模型的手术培训或植入物设计中越来越重要。尽管先进的成像和重建技术可以创建准确,详细的患者解剖结构3D模型,但能够充分利用3D-PSM潜力的软件工具仍然远远不能令人满意。特别是,仍然缺乏从3D-PSM中提取,编码,共享和检索医学相关信息并将其具体用作诊断和治疗支持的集成方法。在本文中,我们提出了SemAnatomy3D框架,该框架演示了本体驱动的3D-PSM及其几何相关特征(相关部分)的注释可以如何帮助临床医生更有效地记录病理及其演变过程。我们以手部类风湿关节炎的诊断为例,说明了这种思想,并展示了特征提取工具和语义3D注释如何提供丰富的解剖标志(例如关节面,突出特征,韧带附件)和病理特征标记(侵蚀,骨质流失)。核心贡献是用于3D-PSM的本体驱动的基于零件的注释方法,以及新颖的腐蚀自动定位和OMERACT RAMRIS腐蚀评分的量化。最后,我们将结果与医学基础事实进行了比较。

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