Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an important technology for detecting the early onset of cardiovascular disease and assessing personal health status. Conventional pulse sensors have the capability of detecting human biosignals, but have significant drawbacks of power consumption issues that limit sustainable operation of wearable medical devices. Here, a self-powered piezoelectric pulse sensor is demonstrated to enable in vivo measurement of radial/carotid pulse signals in near-surface arteries. The inorganic piezoelectric sensor on an ultrathin plastic achieves conformal contact with the complex texture of the rugged skin, which allows to respond to the tiny pulse changes aris...
Measuring the arterial waveform in real-time using wearable devices mounted directly on skin holds p...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
In this contribution, we evaluate the performance of an additively fabricated piezoelectric poly(vin...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Self-powered, highly unobtrusive, low-cost and accurate arterial pulse wave monitoring devices need ...
In clinical medicine, a wave of blood flow produced by the heartbeat is propagated by the elastic an...
Radial artery pulse pressure contains abundant cardiovascular physiological and pathological informa...
The ability to measure subtle changes in arterial pressure using devices mounted on the skin can be ...
Wearable pressure sensors have demonstrated great potential in detecting pulse pressure waves on the...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...
Previous studies have found that the non-invasive blood pressure measurement method based on the osc...
Understanding arterial distensibility has shown to be important in the pathogenesis of cardiovascula...
In this study, we developed a novel heart rate (HR) monitoring approach in which we measure the pres...
This research is aimed to evaluate the feasibility and efficacy of a piezoelectric thinfilm (PETF) b...
Flexible pressure sensors with the capability of monitoring human vital signs show broad application...
Measuring the arterial waveform in real-time using wearable devices mounted directly on skin holds p...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
In this contribution, we evaluate the performance of an additively fabricated piezoelectric poly(vin...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Self-powered, highly unobtrusive, low-cost and accurate arterial pulse wave monitoring devices need ...
In clinical medicine, a wave of blood flow produced by the heartbeat is propagated by the elastic an...
Radial artery pulse pressure contains abundant cardiovascular physiological and pathological informa...
The ability to measure subtle changes in arterial pressure using devices mounted on the skin can be ...
Wearable pressure sensors have demonstrated great potential in detecting pulse pressure waves on the...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...
Previous studies have found that the non-invasive blood pressure measurement method based on the osc...
Understanding arterial distensibility has shown to be important in the pathogenesis of cardiovascula...
In this study, we developed a novel heart rate (HR) monitoring approach in which we measure the pres...
This research is aimed to evaluate the feasibility and efficacy of a piezoelectric thinfilm (PETF) b...
Flexible pressure sensors with the capability of monitoring human vital signs show broad application...
Measuring the arterial waveform in real-time using wearable devices mounted directly on skin holds p...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
In this contribution, we evaluate the performance of an additively fabricated piezoelectric poly(vin...