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Piezologist: A Novel Wearable Piezoelectric-based Cardiorespiratory Monitoring System

机译:压锌剂:一种新型可穿戴压电基的心肺监测系统

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In this paper, the design, prototyping and software development of a novel wearable cardiorespiratory parameters monitoring sensor and software applications is illustrated. Piezologist is an unobtrusive chest worn device. It comprises a patch-type sensor and a mobile application. The sensor utilizes piezoelectric material as the cardiorespiratory signal sensing component and MetaWearC board as the signal acquisition unit. The board also comes with Bluetooth Low Energy (BLE) support which is utilized for the raw signal transmission. The novelty aspect of the system rests on the fact that not only using a single cheap piezoelectric sheet common cardiorespiratory parameters (such as heart rate, respiration rate, and cycles) were obtained similar to previous studies but ECG waveform and blood pressure data were also extracted successfully using the same sensor. In addition, sensor packaging design and prototyping and their effect on the acquired signal strength on one hand and the package size (volume and weight) on the other hand were studied and reported. For performance validation purpose, the developed cardiorespiratory monitoring sensor system results were validated against two commercial sensor devices namely 3-lead ECG sensor from eHealth sensor kit and Zephyr belt-type BioHarness sensor, and the results were reported herein. The validation process outcomes confirmed that the cardiorespiratory signals extracted using Piezologist conform with a heartbeat, respiratory cycle and ECG waveform obtained using the commercial sensors. Furthermore, a usability study was conducted to compare the user experience offered by Piezologist against commercially available sensors for measuring cardiorespiratory parameters. The study highlighted the potential that Piezologist will take over the commercial available belt-type, watch-type and 3-lead ECG sensors.
机译:在本文中,示出了新型可穿戴式心肺透视参数监测传感器和软件应用的设计,原型和软件开发。压锌剂是一种不引人注目的胸部磨损的装置。它包括贴片式传感器和移动应用程序。该传感器利用压电材料作为心脏偏见信号感测元件和MetAweAlc板作为信号采集单元。该电路板还配备了用于原始信号传输的蓝牙低能量(BLE)支架。系统的新颖性方面依赖于类似于先前研究获得的不仅使用单一廉价的压电片常见的心速率(如心率,呼吸率和循环),而且还提取了ECG波形和血压数据成功使用相同的传感器。此外,研究了传感器包装设计和原型,以及对一方面的采集信号强度的影响及另一方面,并​​报告了另一方面的封装尺寸(体积和重量)。为了性能验证目的,开发的心肺监测传感器系统结果针对来自eHealth传感器套件和Zephyr皮带型生物乳管传感器的3引导ECG传感器进行了验证,从而报道了结果。验证过程结果证实,使用压力学表格提取的心肺信号符合使用商业传感器获得的心跳,呼吸周期和ECG波形。此外,进行了可用性研究,以比较压辅候专用的用户体验,用于测量心脏偏移参数的市售传感器。该研究强调了压力学家将接管商业可用皮带型,观看型和3引导ECG传感器的潜力。

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