We propose a multiple initialization based spectral peak tracking (MISPT) technique for heart rate monitoring from photoplethysmography (PPG) signal. MISPT is applied on the PPG signal after removing the motion artifact using an adaptive noise cancellation filter. MISPT yields several estimates of the heart rate trajectory from the spectrogram of the denoised PPG signal which are finally combined using a novel measure called trajectory strength. Multiple initializations help in correcting erroneous heart rate trajectories unlike the typical SPT which uses only single initialization. Experiments on the PPG data from 12 subjects recorded during intensive physical exercise show that the MISPT based heart rate monitoring indeed yields a better ...
Although wrist-type photoplethysmographic (hereafter referred to as WPPG) sensor signals can measure...
Non-invasive monitoring of physiological signals during physical exercise is essential to customize ...
The purpose of this paper is twofold. The first purpose is to detect M-peaks from raw photoplethysmo...
We propose a multiple initialization based spectral peak tracking (MISPT) technique for heart rate m...
Dynamic accurate heart-rate (HR) estimation using a photoplethysmogram (PPG) during intense physical...
Accurate estimation of heart rates from photoplethysmogram (PPG) signals during intense physical act...
Accurate and reliable estimation of the heart rate using wearable devices, especially during physica...
Physical activity can severely influence the quality of photoplethysmographic (PPG) signals due to m...
The estimation of heart rate (HR) based on wearable devices is of interest in fitness. Photoplethysm...
Photopletismography (PPG) is a simple, low cost and noninvasive technique, implemented by pulse-oxim...
Photoplethysmography (PPG) is a widely used technology, routinely employed for heart rate measuremen...
Objective: Recently numerous methods have been proposed for estimating average heart rate using phot...
In recent years, wearable photoplethysmographic (PPG) biosensors have emerged as promising tools to ...
This paper deals with the estimation of the temporal evolution of heart rate (HR), in subjects under...
Photoplethysmography (PPG) is a non invasive measurement of the blood flow, that can be used instead...
Although wrist-type photoplethysmographic (hereafter referred to as WPPG) sensor signals can measure...
Non-invasive monitoring of physiological signals during physical exercise is essential to customize ...
The purpose of this paper is twofold. The first purpose is to detect M-peaks from raw photoplethysmo...
We propose a multiple initialization based spectral peak tracking (MISPT) technique for heart rate m...
Dynamic accurate heart-rate (HR) estimation using a photoplethysmogram (PPG) during intense physical...
Accurate estimation of heart rates from photoplethysmogram (PPG) signals during intense physical act...
Accurate and reliable estimation of the heart rate using wearable devices, especially during physica...
Physical activity can severely influence the quality of photoplethysmographic (PPG) signals due to m...
The estimation of heart rate (HR) based on wearable devices is of interest in fitness. Photoplethysm...
Photopletismography (PPG) is a simple, low cost and noninvasive technique, implemented by pulse-oxim...
Photoplethysmography (PPG) is a widely used technology, routinely employed for heart rate measuremen...
Objective: Recently numerous methods have been proposed for estimating average heart rate using phot...
In recent years, wearable photoplethysmographic (PPG) biosensors have emerged as promising tools to ...
This paper deals with the estimation of the temporal evolution of heart rate (HR), in subjects under...
Photoplethysmography (PPG) is a non invasive measurement of the blood flow, that can be used instead...
Although wrist-type photoplethysmographic (hereafter referred to as WPPG) sensor signals can measure...
Non-invasive monitoring of physiological signals during physical exercise is essential to customize ...
The purpose of this paper is twofold. The first purpose is to detect M-peaks from raw photoplethysmo...