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Skin-Conformal Electronics for Wearable Electrogastrography Monitoring

胃轻瘫 可穿戴计算机 信号(编程语言) 数码产品 计算机科学 计算机硬件 信号处理 可穿戴技术 导电体 管道(软件) 数字信号处理 电子工程 生物医学工程 临床诊断 远程病人监护 工程类 柔性电子器件 胃肠系统 嵌入式系统 数据采集 数字信号 持续监测 人工智能 探测理论 钥匙(锁) 导电的 诊断设备 可伸缩电子设备 肌电图 模拟信号
作者
Liuxi Xing,Yulu Cai,Yunnuo Zhang,Vittorio Mottini,Linux Heller,Jinxing Li
出处
期刊:IEEE journal on flexible electronics [Institute of Electrical and Electronics Engineers]
卷期号:5 (6): 209-216 被引量:1
标识
DOI:10.1109/jflex.2025.3623601
摘要

Electrogastrography (EGG), a non-invasive method for measuring gastric myoelectrical activity, offers valuable insights into gastrointestinal motility and functional disorders such as gastroparesis and functional dyspepsia. Despite its diagnostic potential, the clinical adoption of EGG has been limited due to its reliance on rigid electrodes and bulky instrumentation, which leads to motion artifacts and poor signal quality, and ultimately reduces patient comfort and restricting data collection to short-duration, stationary settings. To address these limitations, we present FlexEGG, a skin-conformal, flexible electronic system engineered for high-fidelity EGG monitoring in both clinical and real-world environments. The device incorporates a soft, stretchable electrode array specifically designed for the abdominal surface, utilizing a hybrid stretchable conductor composed of conductive polymer, silver nanowires (AgNWs), and polyurethane elastomer, which leads to good skin contact, signal stability, and mechanical conformability. A custom low-noise analog front-end and digital signal processing pipeline enables reliable acquisition of low-frequency, low-amplitude gastric slow waves. Additionally, FlexEGG supports simultaneous electrocardiogram (ECG) measurement, potentially facilitating integrated gut–heart axis monitoring for broader physiological assessment. In this study, we describe the design, implementation, and validation of FlexEGG in multi-channel, long-duration EGG and ECG recordings. Our findings demonstrate its potential as a wearable, non-invasive tool for continuous gastrointestinal electrophysiology monitoring, enabling new opportunities for diagnosing and managing digestive disorders in everyday settings.
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