Latest Research in Non-Invasive Vital Sign Monitoring
37 research papers · 2026 median publication year
Top Research Topics in Non-Invasive Vital Sign Monitoring
- Advanced Sensor and Energy Harvesting Materials — 26 papers
- Dielectric materials and actuators — 4 papers
- Advanced Materials and Mechanics — 3 papers
- Non-Invasive Vital Sign Monitoring — 1 papers
- Planarian Biology and Electrostimulation — 1 papers
- Soft Condensed Matter — 1 papers
- Winter Sports Injuries and Performance — 1 papers
Highest-Cited Papers
- Ion-Containing Bottlebrush Elastomers as Pressure-Sensitive Electroadhesives
- Soft bioelectronics for wireless drug delivery: programmable, minimally invasive and closed-loop therapeutics
- Photo-guided azopolymer hydrogel actuators
- Seamless transformation of flexible plastic film-based sensor to wearable textile-based sensor
- Nanohelical Permeable Electronics with Strain-Insensitive Performance
- Hierarchically Helical and Buckled Gold Leaf on TPU Fibers for Superelastic Electrodes and Multifunctional Sensors
- Electroadhesion in Polymer–Polymer Systems: From Theory and Modeling to Emerging Applications
- A Closed-Loop Living-Form Reprogramming Device Platform (ECBP): System Design, Evidence Stratification, and a Falsifiable Research Programme
- Enhancing High‐Temperature Energy Storage of Multilayer Polymer Composites Using Various Functions of Single Fillers
- Constructing Microstructured Starch Films via Hydrogen Bonding Manipulation for Transient Flexible Electronics
- Self‐Sustaining Water–Electricity Co‐Supply Via a Wirtz‐Pump‐Driven Triboelectric Nanogenerator
- A Multifunctional Capacitive Sensing Platform for Wireless Vascular and Heart Monitoring
- PMMA-Assisted Conformal Transfer of High-Precision Circuits for Flexible Devices
- Piezoionic copolymer ionogel with tunable hydrogen bond enables epidermal blood pressure analyzer
- Advances in Solution‐Processed Textile Triboelectric Nanogenerators: Ink Formation, Processing Strategies, Applications, and Challenges
- A highly sensitive and drift-free iontronic sensor enabled by a polarity-balanced polyelectrolyte for surgical force sensing
- Bio‐Inspired Janus All‐Nanofiber Self‐Powered Electronic Skins for Multifunctional, High‐Resolution, Artifact‐Free Human–Machine Interface
- Composition‐Tuned Hydrogel Iontronic Patch With a Shared Electrode for Dual‐Mode Pressure and Moisture‐Electric Sensing in Wearable Health Monitoring
- Mechanically Reprogrammed Coaxial Fibers for Multiphysics Transduction and Human‐Machine Interfaces
- Architecture‐Driven Sensor Stability in Weft‐Knitted Engineering Textiles