Soroudi Azadeh, Hernández Niina, Berglin Lena, Nierstrasz Vincent
Textile Materials Technology, Department of Textile Technology, Faculty of Textiles, Engineering and Business, University of Boras, 501 90 Boras, Sweden.
Textile Materials Technology, Department of Textile Technology, Faculty of Textiles, Engineering and Business, University of Boras, 501 90 Boras, Sweden.
J Electrocardiol. 2019 Nov-Dec;57:27-30. doi: 10.1016/j.jelectrocard.2019.08.015. Epub 2019 Aug 21.
Wearable Electrocardiography (ECG) sensing textiles have been widely used due to their high flexibility, comfort, reusability and the possibility to be used for home-based and real-time measurements. Textile electrodes are dry and non-adhesive, therefor unlike conventional gel electrodes, they don't cause skin irritation and are more user-friendly especially for long-term and continuous monitoring outside the hospital. However, the challenge with textile electrodes is that the quality and reliability of recorded ECG signals by smart garments are more sensitive to different factors such as electrode placement, skin humidity, user activities and contact pressure. This review will particularly focus on the research findings regarding the influence of electrode placement on the quality of biosignal sensing, and will introduce the methods used by researchers to measure the optimal positions of the electrodes in wearable ECG garments. The review will help the designers to take into account different parameters, which affect the data quality, reliability and comfort, when selecting the electrode placement in a wearable ECG garment.
可穿戴式心电图(ECG)传感纺织品因其高柔韧性、舒适性、可重复使用性以及可用于家庭和实时测量的可能性而被广泛使用。纺织电极是干式且无粘性的,因此与传统凝胶电极不同,它们不会引起皮肤刺激,并且对用户更友好,特别是对于医院外的长期和连续监测。然而,纺织电极面临的挑战是,智能服装记录的心电图信号的质量和可靠性对诸如电极放置、皮肤湿度、用户活动和接触压力等不同因素更为敏感。本综述将特别关注关于电极放置对生物信号传感质量影响的研究结果,并将介绍研究人员用于测量可穿戴式心电图服装中电极最佳位置的方法。该综述将帮助设计师在选择可穿戴式心电图服装中的电极放置时考虑影响数据质量、可靠性和舒适性的不同参数。