The present study reports a noninvasive technique for the measurement of the pulse transit time differential (PTTD) from the pulse pressure waveforms obtained at the carotid artery and radial artery using fiber Bragg grating pulse recorders (FBGPR). PTTD is defined as the time difference between the arrivals of a pulse pressure waveform at the carotid and radial arterial sites. The PTTD is investigated as an indicator of variation in the systolic blood pressure. The results are validated against blood pressure variation obtained from a Mindray Patient Monitor. Furthermore, the pulse wave velocity computed from the obtained PTTD is compared with the pulse wave velocity obtained from the color Doppler ultrasound system and is found to be in g...
A novel method to measure Pulse Transit Time (PTT) from the force sensors of a modified electronic ...
Blood pressure (BP) determination is a fundamental parameter in cardiovascular assessment. The gold...
For more than a century, there has been interest in pulse wave velocity and pulse transit time as a...
The present study reports a noninvasive technique for the measurement of the pulse transit time diff...
Arterial pulse is an established source of information for the clinical assessment of cardiovascular...
We report a blood pressure evaluation methodology by recording the radial arterial pulse waveform in...
In the present work, we report a novel, in vivo, noninvasive technique to determine radial arterial ...
The conventional method of blood pressure measurement in hospitals uses a cuff that inflates on an a...
This paper describes the development of a continuous cuff-less blood pressure system based on the pu...
: This paper describes the development of a continuous cuff-less blood pressure system based on the ...
Photoplethysmography (PPG) is a simple means of measuring the pulse wave in humans, exploitable for ...
© 2014 IEEE. Blood Pressure (BP) is one of the vital signs in the clinical assessment of patients in...
Photoplethysmography (PPG) is an optical measurement technology capable of recording vol umetric var...
Cardiovascular disease (CVD) is the leading cause of global mortality, with an increasing burden on ...
Aortic pulse wave velocity (PWV), calculated from pulse transit time (PTT) using 2 separate pulse re...
A novel method to measure Pulse Transit Time (PTT) from the force sensors of a modified electronic ...
Blood pressure (BP) determination is a fundamental parameter in cardiovascular assessment. The gold...
For more than a century, there has been interest in pulse wave velocity and pulse transit time as a...
The present study reports a noninvasive technique for the measurement of the pulse transit time diff...
Arterial pulse is an established source of information for the clinical assessment of cardiovascular...
We report a blood pressure evaluation methodology by recording the radial arterial pulse waveform in...
In the present work, we report a novel, in vivo, noninvasive technique to determine radial arterial ...
The conventional method of blood pressure measurement in hospitals uses a cuff that inflates on an a...
This paper describes the development of a continuous cuff-less blood pressure system based on the pu...
: This paper describes the development of a continuous cuff-less blood pressure system based on the ...
Photoplethysmography (PPG) is a simple means of measuring the pulse wave in humans, exploitable for ...
© 2014 IEEE. Blood Pressure (BP) is one of the vital signs in the clinical assessment of patients in...
Photoplethysmography (PPG) is an optical measurement technology capable of recording vol umetric var...
Cardiovascular disease (CVD) is the leading cause of global mortality, with an increasing burden on ...
Aortic pulse wave velocity (PWV), calculated from pulse transit time (PTT) using 2 separate pulse re...
A novel method to measure Pulse Transit Time (PTT) from the force sensors of a modified electronic ...
Blood pressure (BP) determination is a fundamental parameter in cardiovascular assessment. The gold...
For more than a century, there has been interest in pulse wave velocity and pulse transit time as a...