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现代多导动态心电图仪的应用。

Application of Modern Multi-Sensor Holter in Diagnosis and Treatment.

机构信息

Institute of Electronics and Photonics, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkovicova 3, 81219 Bratislava, Slovakia.

Institute of Medical Physics, Biophysics, Informatics and Telemedicine, Faculty of Medicine, Comenius University, Sasinkova 2, 81272 Bratislava, Slovakia.

出版信息

Sensors (Basel). 2020 May 7;20(9):2663. doi: 10.3390/s20092663.

Abstract

Modern Holter devices are very trendy tools used in medicine, research, or sport. They monitor a variety of human physiological or pathophysiological signals. Nowadays, Holter devices have been developing very fast. New innovative products come to the market every day. They have become smaller, smarter, cheaper, have ultra-low power consumption, do not limit everyday life, and allow comfortable measurements of humans to be accomplished in a familiar and natural environment, without extreme fear from doctors. People can be informed about their health and 24/7 monitoring can sometimes easily detect specific diseases, which are normally passed during routine ambulance operation. However, there is a problem with the reliability, quality, and quantity of the collected data. In normal life, there may be a loss of signal recording, abnormal growth of artifacts, etc. At this point, there is a need for multiple sensors capturing single variables in parallel by different sensing methods to complement these methods and diminish the level of artifacts. We can also sense multiple different signals that are complementary and give us a coherent picture. In this article, we describe actual interesting multi-sensor principles on the grounds of our own long-year experiences and many experiments.

摘要

现代动态心电图仪是医学、研究或运动领域非常流行的工具。它们可以监测多种人体生理或病理生理信号。如今,动态心电图仪发展非常迅速,每天都有新的创新产品推向市场。它们变得更小、更智能、更便宜、超低功耗、不限制日常生活,允许在熟悉和自然的环境中舒适地对人体进行测量,而无需医生的极度恐惧。人们可以了解自己的健康状况,24/7 的监测有时可以轻松检测到特定疾病,这些疾病通常在常规救护车运行期间被遗漏。然而,所收集数据的可靠性、质量和数量存在问题。在正常生活中,可能会出现信号记录丢失、伪迹异常增长等情况。此时,需要通过不同的传感方法并行捕获单个变量的多个传感器来补充这些方法,并降低伪迹的水平。我们还可以感知多个互补的不同信号,为我们提供连贯的图像。在本文中,我们将根据自己多年的经验和大量实验,描述实际有趣的多传感器原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6347/7273207/392a216171f6/sensors-20-02663-g001.jpg

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