Simić Mitar, Stavrakis Adrian K, Sinha Ankita, Premčevski Velibor, Markoski Branko, Stojanović Goran M
Faculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, Serbia.
Technical Faculty Mihajlo Pupin, University of Novi Sad, 21000 Zrenjanin, Serbia.
Biosensors (Basel). 2022 May 15;12(5):339. doi: 10.3390/bios12050339.
Respiration monitoring is a very important indicator of health status. It can be used as a marker in the recognition of a variety of diseases, such as sleep apnea, asthma or cardiac arrest. The purpose of the present study is to overcome limitations of the current state of the art in the field of respiration monitoring systems. Our goal was the development of a lightweight handheld device with portable operation and low power consumption. The proposed approach includes a textile capacitive sensor with interdigitated electrodes embroidered into the facemask, integrated with readout electronics. Readout electronics is based on the direct interface of the capacitive sensor and a microcontroller through just one analog and one digital pin. The microcontroller board and sensor are powered by a smartphone or PC through a USB cable. The developed mobile application for the Android™ operating system offers reliable data acquisition and acts as a bridge for data transfer to the remote server. The embroidered sensor was initially tested in a humidity-controlled chamber connected to a commercial impedance analyzer. Finally, in situ testing with 10 volunteering subjects confirmed stable operation with reliable respiration monitoring.
呼吸监测是健康状况的一个非常重要的指标。它可作为识别多种疾病的标志物,如睡眠呼吸暂停、哮喘或心脏骤停。本研究的目的是克服呼吸监测系统领域当前技术水平的局限性。我们的目标是开发一种轻巧的手持设备,具备便携操作和低功耗特性。所提出的方法包括一个带有叉指电极的纺织电容式传感器,该传感器绣在面罩上,并与读出电子设备集成。读出电子设备基于电容式传感器与微控制器仅通过一个模拟引脚和一个数字引脚的直接接口。微控制器板和传感器由智能手机或个人电脑通过USB电缆供电。为安卓™操作系统开发的移动应用程序提供可靠的数据采集,并充当数据传输到远程服务器的桥梁。绣制的传感器最初在连接到商用阻抗分析仪的湿度控制室内进行测试。最后,对10名志愿者进行的现场测试证实了其在可靠的呼吸监测下能稳定运行。