This dissertation presents a fully automatic segmentation algorithm for cardiac MR data. Some of the currently published methods are automatic, but they only work well in 2D and sometimes in 3D and do not perform well near the extremities (apex and base) of the heart. Additionally, they require substantial user input to make them feasible for use in a clinical environment. This dissertation introduces novel approaches to improve the accuracy, robustness, and consistency of existing methods. Segmentation accuracy can be improved by knowing as much about the data as possible. Accordingly, we compute a single 4D active surface that performs segmentation in space and time simultaneously. The segmentation routine can now take advantage o...
3D Active Shape Modeling is a technique to capture shape information from a training set containing ...
Four-dimensional (4D) flow magnetic resonance imaging (4D Flow MRI) enables acquisition of time-reso...
Abstract 116 Purpose – Nowadays, Multi-Slice CT and MR are becoming the preferred methods to evaluat...
This dissertation presents a fully automatic segmentation algorithm for cardiac MR data. Some of the...
PurposeSegmentation of cardiac medical images, an important step in measuring cardiac function, is u...
In this paper, we propose a novel method for segmentation of the left ventricle, right ventricle, an...
International audienceThe aim of this work is to automatically extract quantitative parameters from ...
International audienceBackground: In recent years, there has been a rapid rise in the use of shape p...
ObjectiveThis study's objective is to develop and validate a fast automated 3-D segmentation method ...
Cardiovascular diseases are highly prevalent in the western world. With the aging of the population,...
A novel automatic 3D+time left ventricle (LV) segmentation framework is proposed for cardiac magneti...
Abstract—A model-based method for three-dimensional image segmentation was developed and its perform...
dissertationAn efficient computerized solution is obtained for the quantitative evaluation of ventri...
Abstract. We present a novel approach for automatic segmentation of the myocardium in short-axis MRI...
© 2019, Springer Nature Switzerland AG. Cardiac MR image segmentation is essential for the morpholog...
3D Active Shape Modeling is a technique to capture shape information from a training set containing ...
Four-dimensional (4D) flow magnetic resonance imaging (4D Flow MRI) enables acquisition of time-reso...
Abstract 116 Purpose – Nowadays, Multi-Slice CT and MR are becoming the preferred methods to evaluat...
This dissertation presents a fully automatic segmentation algorithm for cardiac MR data. Some of the...
PurposeSegmentation of cardiac medical images, an important step in measuring cardiac function, is u...
In this paper, we propose a novel method for segmentation of the left ventricle, right ventricle, an...
International audienceThe aim of this work is to automatically extract quantitative parameters from ...
International audienceBackground: In recent years, there has been a rapid rise in the use of shape p...
ObjectiveThis study's objective is to develop and validate a fast automated 3-D segmentation method ...
Cardiovascular diseases are highly prevalent in the western world. With the aging of the population,...
A novel automatic 3D+time left ventricle (LV) segmentation framework is proposed for cardiac magneti...
Abstract—A model-based method for three-dimensional image segmentation was developed and its perform...
dissertationAn efficient computerized solution is obtained for the quantitative evaluation of ventri...
Abstract. We present a novel approach for automatic segmentation of the myocardium in short-axis MRI...
© 2019, Springer Nature Switzerland AG. Cardiac MR image segmentation is essential for the morpholog...
3D Active Shape Modeling is a technique to capture shape information from a training set containing ...
Four-dimensional (4D) flow magnetic resonance imaging (4D Flow MRI) enables acquisition of time-reso...
Abstract 116 Purpose – Nowadays, Multi-Slice CT and MR are becoming the preferred methods to evaluat...