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非接触式技术、传感器以及用于睡眠中心血管和呼吸测量的系统:系统评价。

Contactless Technologies, Sensors, and Systems for Cardiac and Respiratory Measurement during Sleep: A Systematic Review.

机构信息

Ubiquitous Computing Laboratory, Department of Computer Science, HTWG Konstanz-University of Applied Sciences, Alfred-Wachtel-Str. 8, 78462 Konstanz, Germany.

Internet of Things Laboratory, School of Informatics, Reutlingen University, Alteburgstr. 150, 72762 Reutlingen, Germany.

出版信息

Sensors (Basel). 2023 May 24;23(11):5038. doi: 10.3390/s23115038.

Abstract

Sleep is essential to physical and mental health. However, the traditional approach to sleep analysis-polysomnography (PSG)-is intrusive and expensive. Therefore, there is great interest in the development of non-contact, non-invasive, and non-intrusive sleep monitoring systems and technologies that can reliably and accurately measure cardiorespiratory parameters with minimal impact on the patient. This has led to the development of other relevant approaches, which are characterised, for example, by the fact that they allow greater freedom of movement and do not require direct contact with the body, i.e., they are non-contact. This systematic review discusses the relevant methods and technologies for non-contact monitoring of cardiorespiratory activity during sleep. Taking into account the current state of the art in non-intrusive technologies, we can identify the methods of non-intrusive monitoring of cardiac and respiratory activity, the technologies and types of sensors used, and the possible physiological parameters available for analysis. To do this, we conducted a literature review and summarised current research on the use of non-contact technologies for non-intrusive monitoring of cardiac and respiratory activity. The inclusion and exclusion criteria for the selection of publications were established prior to the start of the search. Publications were assessed using one main question and several specific questions. We obtained 3774 unique articles from four literature databases (Web of Science, IEEE Xplore, PubMed, and Scopus) and checked them for relevance, resulting in 54 articles that were analysed in a structured way using terminology. The result was 15 different types of sensors and devices (e.g., radar, temperature sensors, motion sensors, cameras) that can be installed in hospital wards and departments or in the environment. The ability to detect heart rate, respiratory rate, and sleep disorders such as apnoea was among the characteristics examined to investigate the overall effectiveness of the systems and technologies considered for cardiorespiratory monitoring. In addition, the advantages and disadvantages of the considered systems and technologies were identified by answering the identified research questions. The results obtained allow us to determine the current trends and the vector of development of medical technologies in sleep medicine for future researchers and research.

摘要

睡眠对身心健康至关重要。然而,传统的睡眠分析方法——多导睡眠图(PSG)——具有侵入性且昂贵。因此,人们对开发非接触式、非侵入式和非干扰式睡眠监测系统和技术产生了浓厚的兴趣,这些系统和技术可以在对患者影响最小的情况下可靠且准确地测量心肺参数。这导致了其他相关方法的发展,这些方法的特点例如,它们允许更大的运动自由度,并且不需要与身体直接接触,即它们是非接触式的。本系统评价讨论了用于睡眠期间心肺活动非接触式监测的相关方法和技术。考虑到非侵入性技术的当前现状,我们可以确定非侵入性监测心脏和呼吸活动的方法、使用的技术和传感器类型,以及可用于分析的可能生理参数。为此,我们进行了文献综述,并总结了当前使用非接触技术进行非侵入性监测心脏和呼吸活动的研究。在开始搜索之前,确定了出版物选择的纳入和排除标准。使用一个主要问题和几个具体问题对出版物进行评估。我们从四个文献数据库(Web of Science、IEEE Xplore、PubMed 和 Scopus)中获得了 3774 篇独特的文章,并对它们进行了相关性检查,结果有 54 篇文章使用术语进行了结构化分析。结果是 15 种不同类型的传感器和设备(例如,雷达、温度传感器、运动传感器、摄像机),可以安装在医院病房和科室或环境中。检测心率、呼吸率和睡眠障碍(如呼吸暂停)的能力是检查系统和技术整体有效性的特征之一,这些系统和技术被认为可用于心肺监测。此外,通过回答确定的研究问题,确定了所考虑的系统和技术的优缺点。获得的结果使我们能够确定未来研究人员和研究人员在睡眠医学中医疗技术的当前趋势和发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aca2/10255824/486c2a56f663/sensors-23-05038-g001.jpg

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