OBJECTIVES: Detecting instantaneous stroke volume change in response to altered cardiac preload is the physiologic foundation for determining preload responsiveness. DESIGN: Proof-of-concept physiology study. SETTING: Research simulation laboratory. SUBJECTS: Twelve healthy volunteers. INTERVENTIONS: A wireless continuous wave Doppler ultrasound patch was used to measure carotid velocity time integral and carotid corrected flow time during a squat maneuver. The Doppler patch measurements were compared with simultaneous stroke volume measurements obtained from a noninvasive cardiac output monitor. MEASUREMENTS AND MAIN RESULTS: From stand to squat, stroke volume increased by 24% while carotid velocity time integral and carotid corrected flow...
International audienceBackground: Assessment of circulating volume and the requirement for fluid rep...
BACKGROUND: We studied respirophasic variation in carotid artery blood flow peak velocity (ΔVpeak-CA...
Dynamics of blood flow in vivo vary with cardiovascular disease. To examine dynamics change of blood...
PURPOSE: We describe the temporal concordance of 3 hemodynamic monitors. MATERIALS AND METHODS: Heal...
OBJECTIVE: Doppler ultrasonography of the common carotid artery is used to infer stroke volume chang...
BACKGROUND AND AIMS: To test the feasibility of a novel, wearable carotid Doppler ultrasound to trac...
STUDY OBJECTIVE: Noninvasive predictors of volume responsiveness may improve patient care in the eme...
UNLABELLED: Carotid Doppler ultrasound is used as a measure of fluid responsiveness, however, assess...
STUDY OBJECTIVE: Noninvasive predictors of volume responsiveness may improve patient care in the eme...
OBJECTIVES:. Carotid Doppler ultrasound is used as a measure of fluid responsiveness, however, asses...
BACKGROUND: Change of the corrected flow time (Ftc) is a surrogate for tracking stroke volume (SV) i...
Introduction: Common carotid flow measurements may be clinically useful to determine volume responsi...
BACKGROUND: This study evaluated the ability of two Doppler ultrasound-derived parameters, the carot...
PURPOSE: The corrected carotid flow time (ccFT) is derived from a pulsed-wave Doppler signal at the ...
INTRODUCTION:: Measures of arterial pulse pressure variation and left ventricular stroke volume vari...
International audienceBackground: Assessment of circulating volume and the requirement for fluid rep...
BACKGROUND: We studied respirophasic variation in carotid artery blood flow peak velocity (ΔVpeak-CA...
Dynamics of blood flow in vivo vary with cardiovascular disease. To examine dynamics change of blood...
PURPOSE: We describe the temporal concordance of 3 hemodynamic monitors. MATERIALS AND METHODS: Heal...
OBJECTIVE: Doppler ultrasonography of the common carotid artery is used to infer stroke volume chang...
BACKGROUND AND AIMS: To test the feasibility of a novel, wearable carotid Doppler ultrasound to trac...
STUDY OBJECTIVE: Noninvasive predictors of volume responsiveness may improve patient care in the eme...
UNLABELLED: Carotid Doppler ultrasound is used as a measure of fluid responsiveness, however, assess...
STUDY OBJECTIVE: Noninvasive predictors of volume responsiveness may improve patient care in the eme...
OBJECTIVES:. Carotid Doppler ultrasound is used as a measure of fluid responsiveness, however, asses...
BACKGROUND: Change of the corrected flow time (Ftc) is a surrogate for tracking stroke volume (SV) i...
Introduction: Common carotid flow measurements may be clinically useful to determine volume responsi...
BACKGROUND: This study evaluated the ability of two Doppler ultrasound-derived parameters, the carot...
PURPOSE: The corrected carotid flow time (ccFT) is derived from a pulsed-wave Doppler signal at the ...
INTRODUCTION:: Measures of arterial pulse pressure variation and left ventricular stroke volume vari...
International audienceBackground: Assessment of circulating volume and the requirement for fluid rep...
BACKGROUND: We studied respirophasic variation in carotid artery blood flow peak velocity (ΔVpeak-CA...
Dynamics of blood flow in vivo vary with cardiovascular disease. To examine dynamics change of blood...