Continuous real-time non-invasive non-invasive external force is not easy to operate independent research and development
Product principle
The methodology of measuring is to use two clip-typed near-infrared sensors (similar to the sensor used to measure oxygen saturation) to measure a pair of pulse waves of posterior auricular artery and dorsal digital artery; then calculate the blood pressure based on the pulse wave velocity (PWV) and the shape feature variation of pulse waves.
Measurement technology
Methods based on the velocity and shape feature of pulse waves
Accuracy Real-time Security Reliability Comfort Noise immunity Ease of use Portability
Precision:
Meeting the Standard of AAMI SP-10: Mean Deviation≤5mmHg and standard Deviation≤8mmHg
Real-time performance:
beat-to-beat measurement
Safety:
Infrared sensor poses no pressure on body; no damage on examining part even after longtime use, truly the “non-invasive monitoring”.
Reliability:
Blood pressure is measured through reliable core software; the precision will not be compromised even after longtime use.
Comfort:
Infrared sensor gives a comfortable user experience
Applied to patients both under/not under anaesthetic
Outstanding performance on monitoring blood pressure for post-operation patients in the first 48-hours and night blood pressure monitoring in general wards
Anti-Interference:
No strict requirement on measuring position
Put the sensor back on ear or toe if the sensor is moved or fall off due to any motion or bumping; reset is not required.
Convenience:
Easy to install
Operable for non-professionals
Portable:
Small size, light, handy
Application scenario
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