Cardiovascular diseases are currently the leading cause of mortality in the population of developed countries, due to the constant increase in cardiovascular risk factors, such as high blood pressure, cholesterol, overweight, tobacco use, lack of physical activity, etc. Numerous prospective and retrospective studies have shown that arterial stiffening is a relevant predictor of these diseases. Unfortunately, the arterial stiffness distribution across the human body is difficult to measure experimentally. We propose a numerical approach to determine the arterial stiffness distribution of an arterial network using a subject-specific one-dimensional model. The proposed approach calibrates the optimal parameters of the reduced-order model, incl...
Abstract. In this paper, a finite element (FE) modeling is used to model effects of the arterial sti...
Clinical assessment of arterial stiffness relies on noninvasive measurements of regional pulse wave ...
Clinical assessment of arterial stiffness relies on noninvasive measurements of regional pulse wave ...
Cardiovascular diseases are currently the leading cause of mortality in the population of developed ...
Cardiovascular diseases are currently the leading cause of mortality in developed countries, due to ...
To estimate arterial stiffness, different methods based either on distensibility, pulse wave velocit...
Mathematical models of the arterial tree constitute a valuable tool to investigate the hemodynamics ...
Introduction: Although pulse wave velocity (PWV), a proxy of arterial stiffness, is a strong predict...
Introduction: Although pulse wave velocity (PWV), a proxy of arterial stiffness, is a strong predict...
Abstract — In this paper, a finite elements (FE) modeling is used to model effects of the arterial s...
Introduction: Arterial stiffness is an important predictor of cardiovascular risk. Several indices h...
The validation of a coupled 1D–0D model of the lower-limb arterial hemodynamics is presented. This s...
In this paper an existing in vivo parameter identification method for arteries is extended to accoun...
Abstract. In this paper, a finite element (FE) modeling is used to model effects of the arterial sti...
Clinical assessment of arterial stiffness relies on noninvasive measurements of regional pulse wave ...
Clinical assessment of arterial stiffness relies on noninvasive measurements of regional pulse wave ...
Cardiovascular diseases are currently the leading cause of mortality in the population of developed ...
Cardiovascular diseases are currently the leading cause of mortality in developed countries, due to ...
To estimate arterial stiffness, different methods based either on distensibility, pulse wave velocit...
Mathematical models of the arterial tree constitute a valuable tool to investigate the hemodynamics ...
Introduction: Although pulse wave velocity (PWV), a proxy of arterial stiffness, is a strong predict...
Introduction: Although pulse wave velocity (PWV), a proxy of arterial stiffness, is a strong predict...
Abstract — In this paper, a finite elements (FE) modeling is used to model effects of the arterial s...
Introduction: Arterial stiffness is an important predictor of cardiovascular risk. Several indices h...
The validation of a coupled 1D–0D model of the lower-limb arterial hemodynamics is presented. This s...
In this paper an existing in vivo parameter identification method for arteries is extended to accoun...
Abstract. In this paper, a finite element (FE) modeling is used to model effects of the arterial sti...
Clinical assessment of arterial stiffness relies on noninvasive measurements of regional pulse wave ...
Clinical assessment of arterial stiffness relies on noninvasive measurements of regional pulse wave ...