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A Web-Based Data-Querying Tool Based on Ontology-Driven Methodology and Flowchart-Based Model

机译:基于本体驱动方法和流程图模型的基于Web的数据查询工具

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Background Because of the increased adoption rate of electronic medical record (EMR) systems, more health care records have been increasingly accumulating in clinical data repositories. Therefore, querying the data stored in these repositories is crucial for retrieving the knowledge from such large volumes of clinical data. Objective The aim of this study is to develop a Web-based approach for enriching the capabilities of the data-querying system along the three following considerations: (1) the interface design used for query formulation, (2) the representation of query results, and (3) the models used for formulating query criteria. Methods The Guideline Interchange Format version 3.5 (GLIF3.5), an ontology-driven clinical guideline representation language, was used for formulating the query tasks based on the GLIF3.5 flowchart in the Protégé environment. The flowchart-based data-querying model (FBDQM) query execution engine was developed and implemented for executing queries and presenting the results through a visual and graphical interface. To examine a broad variety of patient data, the clinical data generator was implemented to automatically generate the clinical data in the repository, and the generated data, thereby, were employed to evaluate the system. The accuracy and time performance of the system for three medical query tasks relevant to liver cancer were evaluated based on the clinical data generator in the experiments with varying numbers of patients. Results In this study, a prototype system was developed to test the feasibility of applying a methodology for building a query execution engine using FBDQMs by formulating query tasks using the existing GLIF. The FBDQM-based query execution engine was used to successfully retrieve the clinical data based on the query tasks formatted using the GLIF3.5 in the experiments with varying numbers of patients. The accuracy of the three queries (ie, “degree of liver damage,” “degree of liver damage when applying a mutually exclusive setting,” and “treatments for liver cancer”) was 100% for all four experiments (10 patients, 100 patients, 1000 patients, and 10,000 patients). Among the three measured query phases, (1) structured query language operations, (2) criteria verification, and (3) other, the first two had the longest execution time. Conclusions The ontology-driven FBDQM-based approach enriched the capabilities of the data-querying system. The adoption of the GLIF3.5 increased the potential for interoperability, shareability, and reusability of the query tasks.
机译:背景技术由于电子病历(EMR)系统的采用率不断提高,越来越多的医疗保健记录在临床数据存储库中积累。因此,查询存储在这些存储库中的数据对于从如此大量的临床数据中检索知识至关重要。目的本研究旨在基于以下三个方面,开发一种基于Web的方法来丰富数据查询系统的功能:(1)用于查询表述的界面设计,(2)查询结果的表示, (3)用于制定查询条件的模型。方法使用Protégé环境中基于GLIF3.5流程图的本体论驱动的临床指南表示语言Guideline Interchange Format版本3.5(GLIF3.5)来制定查询任务。开发并实现了基于流程图的数据查询模型(FBDQM)查询执行引擎,用于执行查询并通过视觉和图形界面呈现结果。为了检查各种各样的患者数据,实施了临床数据生成器以自动在存储库中生成临床数据,然后使用生成的数据对系统进行评估。基于临床数据生成器,在不同患者人数的实验中,评估了与肝癌相关的三个医疗查询任务的系统的准确性和时间性能。结果在这项研究中,开发了一个原型系统,以测试通过使用现有GLIF制定查询任务来使用FBDQM构建查询执行引擎的方法的可行性。基于FBDQM的查询执行引擎被用于在使用GLIF3.5格式化的查询任务的基础上,成功地检索临床数据,并具有不同的患者数量。对于所有四个实验(10例患者,100例患者),三个查询的准确性(即“肝损害程度”,“应用互斥设置时的肝损害程度”和“肝癌的治疗方法”)的准确性均为100% ,1000位患者和10,000位患者)。在三个测量的查询阶段中,(1)结构化查询语言操作,(2)标准验证和(3)其他阶段,前两个执行时间最长。结论基于本体驱动的基于FBDQM的方法丰富了数据查询系统的功能。 GLIF3.5的采用增加了查询任务的互操作性,可共享性和可重用性。

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