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利用可及的物联网技术实现远程医疗保健监测:现状、洞察与实验设计。

Towards remote healthcare monitoring using accessible IoT technology: state-of-the-art, insights and experimental design.

机构信息

Department of Computer and Information Sciences, Faculty of Engineering and Environment, Northumbria University, Newcastle Upon Tyne, NE1 8ST, UK.

Director of Research, Ryder Architecture, Newcastle Upon Tyne, NE1 3NN, UK.

出版信息

Biomed Eng Online. 2020 Oct 30;19(1):80. doi: 10.1186/s12938-020-00825-9.

Abstract

Healthcare studies are moving toward individualised measurement. There is need to move beyond supervised assessments in the laboratory/clinic. Longitudinal free-living assessment can provide a wealth of information on patient pathology and habitual behaviour, but cost and complexity of equipment have typically been a barrier. Lack of supervised conditions within free-living assessment means there is need to augment these studies with environmental analysis to provide context to individual measurements. This paper reviews low-cost and accessible Internet of Things (IoT) technologies with the aim of informing biomedical engineers of possibilities, workflows and limitations they present. In doing so, we evidence their use within healthcare research through literature and experimentation. As hardware becomes more affordable and feature rich, the cost of data magnifies. This can be limiting for biomedical engineers exploring low-cost solutions as data costs can make IoT approaches unscalable. IoT technologies can be exploited by biomedical engineers, but more research is needed before these technologies can become commonplace for clinicians and healthcare practitioners. It is hoped that the insights provided by this paper will better equip biomedical engineers to lead and monitor multi-disciplinary research investigations.

摘要

医疗保健研究正朝着个体化测量的方向发展。有必要超越实验室/诊所中的监督评估。纵向自由生活评估可以提供大量有关患者病理和习惯行为的信息,但设备的成本和复杂性通常是一个障碍。自由生活评估中缺乏监督条件意味着需要通过环境分析来补充这些研究,为个体测量提供背景。本文回顾了低成本和易于访问的物联网 (IoT) 技术,旨在让生物医学工程师了解它们所带来的可能性、工作流程和局限性。为此,我们通过文献和实验证明了它们在医疗保健研究中的应用。随着硬件变得更加实惠和功能丰富,数据成本也在增加。对于探索低成本解决方案的生物医学工程师来说,这可能是一个限制因素,因为数据成本可能使 IoT 方法无法扩展。生物医学工程师可以利用物联网技术,但在这些技术成为临床医生和医疗保健从业者的常用工具之前,还需要更多的研究。希望本文提供的见解能够更好地装备生物医学工程师,以领导和监控多学科研究调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6ac/7602322/ad06a36bf8a5/12938_2020_825_Fig1_HTML.jpg

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