Hemodynamic properties and deformation of vessel structures are assumed to be correlated to the initiation, development, and rupture of cerebral aneurysms. Therefore, precise quantification of wall motion is essential. However, using standard-of-care imaging data, approaches for patient-specific estimation of pulsatile deformation are prone to uncertainties due to, e.g., contrast agent inflow-related intensity changes and small deformation compared to the image resolution. A ground truth dataset that allows evaluating and finetuning algorithms for deformation estimation is lacking. We designed a flow phantom with deformable structures that resemble cerebral vessels and exhibit physiologically plausible deformation. The deformation was simul...
Aneurysm wall motion has been reported to be associated with rupture. However, its quantification wi...
Three key challenges in developing advanced image-based computational models of cerebral aneurysms a...
This paper presents a technique to recover dynamic 3D vascular morphology from a single 3D rotationa...
Hemodynamic properties and deformation of vessel structures are assumed to be correlated to the init...
Cardiac-cycle related pulsatile aneurysm motion and deformation is assumed to provide valuable infor...
Cardiac-cycle related pulsatile aneurysm motion and deformation is assumed to provide valuable infor...
PURPOSE: In this article, the authors studied the feasibility of estimating regional mechanical prop...
Background: The development of new diagnostic technologies for cerebrovascular diseases requires an ...
Purpose: The objective of this study is to investigate the feasibility of detecting and quantifying ...
Purpose: The objective of this study is to investigate the feasibility of detecting and quantifying ...
The quantification of wall motion in cerebral aneurysms is becoming important owing to its potential...
Abstract. The quantification of wall motion in cerebral aneurysms is becoming important owing to its...
The quantification of wall motion in cerebral aneurysms is becoming important owing to its potential...
Hemodynamics, and in particular Wall Shear Stress (WSS), is thought to play a critical role in the p...
The objective of this research is to develop new criteria, by tracking aneurysm growth over time, to...
Aneurysm wall motion has been reported to be associated with rupture. However, its quantification wi...
Three key challenges in developing advanced image-based computational models of cerebral aneurysms a...
This paper presents a technique to recover dynamic 3D vascular morphology from a single 3D rotationa...
Hemodynamic properties and deformation of vessel structures are assumed to be correlated to the init...
Cardiac-cycle related pulsatile aneurysm motion and deformation is assumed to provide valuable infor...
Cardiac-cycle related pulsatile aneurysm motion and deformation is assumed to provide valuable infor...
PURPOSE: In this article, the authors studied the feasibility of estimating regional mechanical prop...
Background: The development of new diagnostic technologies for cerebrovascular diseases requires an ...
Purpose: The objective of this study is to investigate the feasibility of detecting and quantifying ...
Purpose: The objective of this study is to investigate the feasibility of detecting and quantifying ...
The quantification of wall motion in cerebral aneurysms is becoming important owing to its potential...
Abstract. The quantification of wall motion in cerebral aneurysms is becoming important owing to its...
The quantification of wall motion in cerebral aneurysms is becoming important owing to its potential...
Hemodynamics, and in particular Wall Shear Stress (WSS), is thought to play a critical role in the p...
The objective of this research is to develop new criteria, by tracking aneurysm growth over time, to...
Aneurysm wall motion has been reported to be associated with rupture. However, its quantification wi...
Three key challenges in developing advanced image-based computational models of cerebral aneurysms a...
This paper presents a technique to recover dynamic 3D vascular morphology from a single 3D rotationa...