Understanding myocardial remodelling, and developing tools for its accurate quantification, is fundamental for improving the diagnosis and treatment of myocardial infarction patients. Conventional clinical metrics, such as blood pool volume or ejection fraction, are not always distinctive. Here we describe a method for the classification of myocardial infarction from 3D diastolic and systolic left ventricle shapes, represented by point sets. Classification features included global geometric, shape and thickness descriptors, and a random forest was used for classification. Results from cross validation show an accuracy of 92.5% (leave-one-out) and 91.5% (5-fold), improving the 87% obtained with ejection fraction thresholds. These results sug...
We characterized motion attributes arising from LV spatio-temporal analysis of motion distributions ...
International audienceAccurate quantification of myocardial viabilityis essential to determine the b...
Abstract—Automating the detection and localization of seg-mental (regional) left ventricle (LV) abno...
Statistical shape modeling is a powerful tool for visualizing and quantifying geometric and function...
Statistical shape modeling is a powerful tool for visualizing and quantifying geometric and function...
Statistical shape modeling is a powerful tool for visualizing and quantifying geometric and function...
We present a procedure that detects myocardial infarction by analyzing left ventricular shapes recor...
Myocardial infarction leads to changes in the geometry (remodeling) of the left ventricle (LV) of th...
© Springer International Publishing Switzerland 2016. This paper presents a local-to-global statisti...
Myocardial infarction leads to changes in the geometry (remodeling) of the left ventricle (LV) of th...
Myocardial infarction leads to changes in the geometry (remodeling) of the left ventricle (LV) of th...
The Left Ventricle (LV) undergoes remodelling after Myocardial Infarction (MI). In order to quantify...
We characterized motion attributes arising from LV spatio-temporal analysis of motion distributions ...
We characterized motion attributes arising from LV spatio-temporal analysis of motion distributions ...
International audienceAccurate quantification of myocardial viabilityis essential to determine the b...
Abstract—Automating the detection and localization of seg-mental (regional) left ventricle (LV) abno...
Statistical shape modeling is a powerful tool for visualizing and quantifying geometric and function...
Statistical shape modeling is a powerful tool for visualizing and quantifying geometric and function...
Statistical shape modeling is a powerful tool for visualizing and quantifying geometric and function...
We present a procedure that detects myocardial infarction by analyzing left ventricular shapes recor...
Myocardial infarction leads to changes in the geometry (remodeling) of the left ventricle (LV) of th...
© Springer International Publishing Switzerland 2016. This paper presents a local-to-global statisti...
Myocardial infarction leads to changes in the geometry (remodeling) of the left ventricle (LV) of th...
Myocardial infarction leads to changes in the geometry (remodeling) of the left ventricle (LV) of th...
The Left Ventricle (LV) undergoes remodelling after Myocardial Infarction (MI). In order to quantify...
We characterized motion attributes arising from LV spatio-temporal analysis of motion distributions ...
We characterized motion attributes arising from LV spatio-temporal analysis of motion distributions ...
International audienceAccurate quantification of myocardial viabilityis essential to determine the b...
Abstract—Automating the detection and localization of seg-mental (regional) left ventricle (LV) abno...