Combining biomechanical modelling of left ventricular (LV) function and dysfunction with cardiac magnetic resonance (CMR) imaging has the potential to improve the prognosis of patient-specific cardiovascular disease risks. Biomechanical studies of LV function in three dimensions usually rely on a computerized representation of the LV geometry based on finite element discretization, which is essential for numerically simulating in vivo cardiac dynamics. Detailed knowledge of the LV geometry is also relevant for various other clinical applications, such as assessing the LV cavity volume and wall thickness. Accurately and automatically reconstructing personalized LV geometries from conventional CMR images with minimal manual intervention is st...
Deep learning has been widely applied for left ventricle (LV) analysis, obtaining state of the art r...
The early diagnosis of cardiovascular diseases (CVDs) can effectively prevent them from worsening. T...
We present the development and testing of a semi-automated tool to support the diagnosis of left ven...
Biomechanical studies of the left ventricle (LV) typically rely on a mesh of finite element nodes fo...
The analysis of left ventricle (LV) wall motion is an important step for understanding cardiac funct...
Deep learning has been widely applied for left ventricle (LV) analysis, obtaining state of the art r...
We present the development and testing of a semi-automated tool to support the diagnosis of left ven...
We present a parametric physics-informed neural network for the simulation of personalised left-vent...
Modern breakthroughs in biomedical engineering, computer science, and data mining have created new o...
International audienceIntroductionCardiac ischemia is a condition in which the coronary arteries are...
Assessment of left ventricular (LV) deformation is essential for clinical evaluation of LV function ...
Segmentation of the left ventricle (LV) from cardiac magnetic resonance imaging (MRI) datasets is an...
Parameterised patient-specific models of the heart enable quantitative analysis of cardiac function ...
Models of cardiac mechanics require a well‐defined reference geometry from which deformations and he...
Models of cardiac mechanics require a well‐defined reference geometry from which deformations and he...
Deep learning has been widely applied for left ventricle (LV) analysis, obtaining state of the art r...
The early diagnosis of cardiovascular diseases (CVDs) can effectively prevent them from worsening. T...
We present the development and testing of a semi-automated tool to support the diagnosis of left ven...
Biomechanical studies of the left ventricle (LV) typically rely on a mesh of finite element nodes fo...
The analysis of left ventricle (LV) wall motion is an important step for understanding cardiac funct...
Deep learning has been widely applied for left ventricle (LV) analysis, obtaining state of the art r...
We present the development and testing of a semi-automated tool to support the diagnosis of left ven...
We present a parametric physics-informed neural network for the simulation of personalised left-vent...
Modern breakthroughs in biomedical engineering, computer science, and data mining have created new o...
International audienceIntroductionCardiac ischemia is a condition in which the coronary arteries are...
Assessment of left ventricular (LV) deformation is essential for clinical evaluation of LV function ...
Segmentation of the left ventricle (LV) from cardiac magnetic resonance imaging (MRI) datasets is an...
Parameterised patient-specific models of the heart enable quantitative analysis of cardiac function ...
Models of cardiac mechanics require a well‐defined reference geometry from which deformations and he...
Models of cardiac mechanics require a well‐defined reference geometry from which deformations and he...
Deep learning has been widely applied for left ventricle (LV) analysis, obtaining state of the art r...
The early diagnosis of cardiovascular diseases (CVDs) can effectively prevent them from worsening. T...
We present the development and testing of a semi-automated tool to support the diagnosis of left ven...