首页> 外文期刊>Journal of digital imaging: the official journal of the Society for Computer Applications in Radiology >DICOM for Clinical Research: PACS-Integrated Electronic Data Capture in Multi-Center Trials
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DICOM for Clinical Research: PACS-Integrated Electronic Data Capture in Multi-Center Trials

机译:DICOM用于临床研究:在多中心试验中集成了PACS的电子数据捕获

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摘要

Providing surrogate endpoints in clinical trials, medical imaging has become increasingly important in human-centered research. Nowadays, electronic data capture systems (EDCS) are used but binary image data is integrated insufficiently. There exists no structured way, neither to manage digital imaging and communications in medicine (DICOM) data in EDCS nor to interconnect EDCS with picture archiving and communication systems (PACS). Manual detours in the trial workflow yield errors, delays, and costs. In this paper, requirements for a DICOM-based system interconnection of EDCS and research PACS are analysed. Several workflow architectures are compared. Optimized for multi-center trials, we propose an entirely web-based solution integrating EDCS, PACS, and DICOM viewer, which has been implemented using the open source projects OpenClinica, DCM4CHEE, and Weasis, respectively. The EDCS forms the primary access point. EDCS to PACS interchange is integrated seamlessly on the data and the context levels. DICOM data is viewed directly from the electronic case report form (eCRF), while PACS-based management is hidden from the user. Data privacy is ensured by automatic de-identification and re-labelling with study identifiers. Our concept is evaluated on a variety of 13 DICOM modalities and transfer syntaxes. We have implemented the system in an ongoing investigator-initiated trial (IIT), where five centers have recruited 24 patients so far, performing decentralized computed tomography (CT) screening. Using our system, the chief radiologist is reading DICOM data directly from the eCRF. Errors and workflow processing time are reduced. Furthermore, an imaging database is built that may support future research.
机译:在临床试验中提供替代终点时,医学成像在以人为中心的研究中变得越来越重要。如今,虽然使用了电子数据捕获系统(EDCS),但是二进制图像数据的集成不足。没有结构化的方法,既无法管理EDCS中的医学数字成像和通信(DICOM)数据,也无法将EDCS与图片存档和通信系统(PACS)互连。试用工作流程中的人工绕行会产生错误,延误和成本。本文分析了基于DICOM的EDCS系统互连和研究PACS的需求。比较了几种工作流程架构。针对多中心试验进行了优化,我们提出了一个完全基于网络的解决方案,将EDCS,PACS和DICOM查看器集成在一起,已分别使用开源项目OpenClinica,DCM4CHEE和Weasis实施了该解决方案。 EDCS构成了主要的接入点。 EDCS到PACS的交换无缝集成在数据和上下文级别上。直接从电子病历报告表(eCRF)中查看DICOM数据,而对用户隐藏基于PACS的管理。通过自动取消身份识别并使用研究标识符重新标记来确保数据隐私。我们的概念在13种DICOM方式和传输语法中得到了评估。我们已经在一项正在进行的研究人员发起的试验(IIT)中实施了该系统,该试验迄今已有五个中心招募了24名患者,并进行了分散型计算机体层摄影(CT)筛查。使用我们的系统,首席放射科医生正在直接从eCRF读取DICOM数据。错误和工作流程的处理时间减少了。此外,建立了可支持未来研究的成像数据库。

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