Piezoelectric nanogenerators for personalized healthcare

W Deng, Y Zhou, A Libanori, G Chen, W Yang… - Chemical Society …, 2022 - pubs.rsc.org
The development of flexible piezoelectric nanogenerators has experienced rapid progress
in the past decade and is serving as the technological foundation of future state-of-the-art …

Human body IoT systems based on the triboelectrification effect: energy harvesting, sensing, interfacing and communication

Q Zhang, C **n, F Shen, Y Gong, YL Zi… - Energy & …, 2022 - pubs.rsc.org
In recent years, the internet of things (IoT) has been progressing rapidly with the integration
of technologies in various fields. At this stage, triboelectric nanogenerator (TENG) …

Thin, soft, wearable system for continuous wireless monitoring of artery blood pressure

J Li, H Jia, J Zhou, X Huang, L Xu, S Jia, Z Gao… - Nature …, 2023 - nature.com
Continuous monitoring of arterial blood pressure (BP) outside of a clinical setting is crucial
for preventing and diagnosing hypertension related diseases. However, current continuous …

Piezoelectric dynamics of arterial pulse for wearable continuous blood pressure monitoring

Z Yi, Z Liu, W Li, T Ruan, X Chen, J Liu… - Advanced …, 2022 - Wiley Online Library
Piezoelectric arterial pulse wave dynamics are traditionally considered to be similar to those
of typical blood pressure waves. However, achieving accurate continuous blood pressure …

Flexible hybrid electronics for digital healthcare

Y Ma, Y Zhang, S Cai, Z Han, X Liu, F Wang… - Advanced …, 2020 - Wiley Online Library
Recent advances in material innovation and structural design provide routes to flexible
hybrid electronics that can combine the high‐performance electrical properties of …

Functional conductive hydrogels for bioelectronics

F Fu, J Wang, H Zeng, J Yu - ACS Materials Letters, 2020 - ACS Publications
Conductive hydrogels are widely used in various applications, such as artificial skin, flexible
and implantable bioelectronics, and tissue engineering. However, it is still a challenge to …

Machine-knitted washable sensor array textile for precise epidermal physiological signal monitoring

W Fan, Q He, K Meng, X Tan, Z Zhou, G Zhang… - Science …, 2020 - science.org
Wearable textile electronics are highly desirable for realizing personalized health
management. However, most reported textile electronics can either periodically target a …

Skin-interfaced biosensors for advanced wireless physiological monitoring in neonatal and pediatric intensive-care units

HU Chung, AY Rwei, A Hourlier-Fargette, S Xu… - Nature medicine, 2020 - nature.com
Standard clinical care in neonatal and pediatric intensive-care units (NICUs and PICUs,
respectively) involves continuous monitoring of vital signs with hard-wired devices that …

Synchronized wearables for the detection of haemodynamic states via electrocardiography and multispectral photoplethysmography

D Franklin, A Tzavelis, JY Lee, HU Chung… - Nature biomedical …, 2023 - nature.com
Cardiovascular health is typically monitored by measuring blood pressure. Here we
describe a wireless on-skin system consisting of synchronized sensors for chest …

Machine learning in cardiovascular flows modeling: Predicting arterial blood pressure from non-invasive 4D flow MRI data using physics-informed neural networks

G Kissas, Y Yang, E Hwuang, WR Witschey… - Computer Methods in …, 2020 - Elsevier
Advances in computational science offer a principled pipeline for predictive modeling of
cardiovascular flows and aspire to provide a valuable tool for monitoring, diagnostics and …