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用于收集泌尿科新型成像传感器测量数据的新数字平台。

A New Digital Platform for Collecting Measurement Data from the Novel Imaging Sensors in Urology.

机构信息

Institute of Applied Informatics, Lodz University of Technology, ul. Stefanowskiego 18/22, 90-537 Łódź, Poland.

Department of Pediatric Surgery and Urology, Hospital of J. Korczak in Łódź, 71 Piłsdskiego Av., 90-329 Łódź, Poland.

出版信息

Sensors (Basel). 2022 Feb 16;22(4):1539. doi: 10.3390/s22041539.

DOI:10.3390/s22041539
PMID:35214441
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8877363/
Abstract

The use of UT and EIT technologies gives the opportunity to develop new, effective, minimally invasive diagnostic methods for urology. The introduction of new diagnostic methods into medicine requires the development of new tools for collecting, processing and analysing the data obtained from them. Such system might be seen as a part of the electronic health record EHR system. The digital medical data management platform must provide the infrastructure that will make medical activity possible and effective in the presented scope. The solution presented in this article was implemented using the newest computer technologies to obtain advantages such as mobility, versatility, flexibility and scalability. The architecture of the developed platform, technological stack proposals, database structure and user interface are presented. In the course of this study, an analysis of known and available standards such as Hl7, RIM, DICOM, and tools for collecting medical data was performed, and the results obtained using them are also presented. The developed digital platform also falls into an innovative path of creating a network of sensors communicating with each other in the digital space, resulting in the implementation of the IoT (Internet of Things) vision. The issues of building software based on the architecture of microservices were discussed emphasizing the role of message brokers. The selected message brokers were also analysed in terms of available features and message transmission time.

摘要

UT 和 EIT 技术的使用为泌尿科提供了新的、有效的、微创的诊断方法。将新的诊断方法引入医学需要开发新的工具来收集、处理和分析从这些方法获得的数据。这样的系统可以被视为电子健康记录 (EHR) 系统的一部分。数字医疗数据管理平台必须提供基础设施,以便在提出的范围内实现医疗活动的可行性和有效性。本文提出的解决方案使用最新的计算机技术实现,具有移动性、多功能性、灵活性和可扩展性等优势。本文介绍了所开发平台的架构、技术堆栈建议、数据库结构和用户界面。在这项研究中,对已知的和可用的标准进行了分析,如 HL7、RIM、DICOM 以及医疗数据采集工具,并展示了使用这些标准获得的结果。所开发的数字平台还采用了创建在数字空间中相互通信的传感器网络的创新方法,从而实现了物联网 (IoT) 的愿景。还讨论了基于微服务架构构建软件的问题,强调了消息代理的作用。还分析了所选的消息代理在可用功能和消息传输时间方面的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad75/8877363/e4710e33f4bb/sensors-22-01539-g008.jpg
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4
National Trends in the Management of Primary Vesicoureteral Reflux in Children.儿童原发性膀胱输尿管反流管理的全国趋势
J Urol. 2018 Jan;199(1):287-293. doi: 10.1016/j.juro.2017.09.073. Epub 2017 Sep 20.
5
Conversion and reliability of two urological grading systems in infants: the Society for Fetal Urology and the urinary tract dilatation classifications system.两种婴儿泌尿系统分级系统的转换与可靠性:胎儿泌尿外科学会和尿路扩张分类系统
Pediatr Radiol. 2017 Jan;47(1):65-73. doi: 10.1007/s00247-016-3721-9. Epub 2016 Oct 10.