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物联网在临床实验室中的应用:机遇、优势和挑战的系统评价。

A Systematic Review of Internet of Things in Clinical Laboratories: Opportunities, Advantages, and Challenges.

机构信息

Department of Research, Nishtar Medical University, Multan 66000, Pakistan.

Department of Research, Independent Medical College, Faisalabad 44000, Pakistan.

出版信息

Sensors (Basel). 2022 Oct 21;22(20):8051. doi: 10.3390/s22208051.

Abstract

The Internet of Things (IoT) is the network of physical objects embedded with sensors, software, electronics, and online connectivity systems. This study explores the role of IoT in clinical laboratory processes; this systematic review was conducted adhering to the PRISMA Statement 2020 guidelines. We included IoT models and applications across preanalytical, analytical, and postanalytical laboratory processes. PubMed, Cochrane Central, CINAHL Plus, Scopus, IEEE, and A.C.M. Digital library were searched between August 2015 to August 2022; the data were tabulated. Cohen's coefficient of agreement was calculated to quantify inter-reviewer agreements; a total of 18 studies were included with Cohen's coefficient computed to be 0.91. The included studies were divided into three classifications based on availability, including preanalytical, analytical, and postanalytical. The majority (77.8%) of the studies were real-tested. Communication-based approaches were the most common (83.3%), followed by application-based approaches (44.4%) and sensor-based approaches (33.3%) among the included studies. Open issues and challenges across the included studies included scalability, costs and energy consumption, interoperability, privacy and security, and performance issues. In this study, we identified, classified, and evaluated IoT applicability in clinical laboratory systems. This study presents pertinent findings for IoT development across clinical laboratory systems, for which it is essential that more rigorous and efficient testing and studies be conducted in the future.

摘要

物联网 (IoT) 是嵌入传感器、软件、电子设备和在线连接系统的物理对象网络。本研究探讨了物联网在临床实验室流程中的作用;本系统评价按照 PRISMA 声明 2020 指南进行。我们纳入了涵盖分析前、分析中和分析后实验室流程的物联网模型和应用。在 2015 年 8 月至 2022 年 8 月期间,我们在 PubMed、Cochrane 中央、CINAHL Plus、Scopus、IEEE 和 A.C.M. Digital library 中进行了搜索;对数据进行了制表。我们计算了 Cohen 一致性系数来量化 reviewers 之间的一致性;共有 18 项研究被纳入,计算得出 Cohen 系数为 0.91。根据可用性,纳入的研究分为三类,包括分析前、分析中和分析后。大多数(77.8%)研究都是实际测试的。通信为基础的方法最常见(83.3%),其次是基于应用的方法(44.4%)和基于传感器的方法(33.3%)。纳入的研究中存在的未解决问题和挑战包括可扩展性、成本和能耗、互操作性、隐私和安全性以及性能问题。在这项研究中,我们确定、分类和评估了物联网在临床实验室系统中的适用性。本研究为临床实验室系统中的物联网开发提供了相关发现,未来有必要进行更严格和高效的测试和研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baa8/9611742/12760b1f9f1a/sensors-22-08051-g001.jpg

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