Increasing efforts exist in integrating different levels of detail in models of the cardiovascular system. For instance, one-dimensional representations are employed to model the systemic circulation. In this context, effective and black-box-type decomposition strategies for one-dimensional networks are needed, so as to: (i) employ domain decomposition strategies for large systemic models (1D-1D coupling) and (ii) provide the conceptual basis for dimensionally-heterogeneous representations (1D-3D coupling, among various possibilities). The strategy proposed in this article works for both of these two scenarios, though the several applications shown to illustrate its performance focus on the 1D-1D coupling case. A one-dimensional network is ...
The cardiovascular system (CVS) can be regarded as the integration of different physiological mechan...
The blood flow in arterial trees in the cardiovascular system can be simulated with the help of diff...
When modeling complex systems such as the cardiovascular circulation one often needs to separate the...
Increasing efforts exist in integrating different levels of detail in models of the cardiovascular s...
In this work a numerical strategy to address the solution of the blood flow in one-dimensional arter...
A black-box decomposition approach for coupling heterogeneous components in hemodynamics simulation
The main goal of this work is to devise robust iterative strategies to partition the solution of the...
To address the issue of computational efficiency related to the modelling of blood flow in complex n...
Mathematical modeling at the level of the full cardiovascular system requires the numerical ap-proxi...
The fluid structure interaction mechanism in vascular dynamics can be described by either 3D or 1D m...
Numerical simulation of blood flows in compliant arteries is becoming an useful tool in studying the...
A computational method of reduced complexity is developed for simulating vascular hemodynamics by co...
A computational method of reduced complexity is developed for simulating vascular hemodynamics by co...
On the one hand the heterogeneity of the circulatory system requires the use of different models in ...
This work is focused on the development of a geometrical multiscale framework for modelling the huma...
The cardiovascular system (CVS) can be regarded as the integration of different physiological mechan...
The blood flow in arterial trees in the cardiovascular system can be simulated with the help of diff...
When modeling complex systems such as the cardiovascular circulation one often needs to separate the...
Increasing efforts exist in integrating different levels of detail in models of the cardiovascular s...
In this work a numerical strategy to address the solution of the blood flow in one-dimensional arter...
A black-box decomposition approach for coupling heterogeneous components in hemodynamics simulation
The main goal of this work is to devise robust iterative strategies to partition the solution of the...
To address the issue of computational efficiency related to the modelling of blood flow in complex n...
Mathematical modeling at the level of the full cardiovascular system requires the numerical ap-proxi...
The fluid structure interaction mechanism in vascular dynamics can be described by either 3D or 1D m...
Numerical simulation of blood flows in compliant arteries is becoming an useful tool in studying the...
A computational method of reduced complexity is developed for simulating vascular hemodynamics by co...
A computational method of reduced complexity is developed for simulating vascular hemodynamics by co...
On the one hand the heterogeneity of the circulatory system requires the use of different models in ...
This work is focused on the development of a geometrical multiscale framework for modelling the huma...
The cardiovascular system (CVS) can be regarded as the integration of different physiological mechan...
The blood flow in arterial trees in the cardiovascular system can be simulated with the help of diff...
When modeling complex systems such as the cardiovascular circulation one often needs to separate the...