Key result
A novel wearable pulse monitor using thermosensation-based flexible sensors successfully achieved synchronous measurements of pulse wave, skin temperature, and pulse wave velocity.
Why the study?
Can a wearable monitor using thermosensation-based flexible sensors synchronously measure pulse wave, skin temperature, and PWV?
Population
Calibration experiments and application cases (specific population not detailed)
Design
Other
Authors
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Prototype enables multimodal wearable biosensing research; leaves open clinical validation for diagnostic applications.
Can a wearable monitor using thermosensation-based flexible sensors synchronously measure pulse wave, skin temperature, and PWV?
A novel wearable pulse monitor using thermosensation-based flexible sensors can synchronously measure pulse wave, skin temperature, and PWV, offering potential for traditional Chinese medicine pulse diagnosis.
Fu et al. (2018) studied Pulse monitoring. Wearable multifunctional pulse monitor using thermosensation-based flexible sensors was evaluated on Synchronous measurements of pulse wave, skin temperature, and pulse wave velocity (PWV). A novel wearable pulse monitor using thermosensation-based flexible sensors successfully achieved synchronous measurements of pulse wave, skin temperature, and pulse wave velocity.
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