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Journal Article
Journal Article
International Journal of Cardiovascular Imaging, ISSN 1569-5794, 2017, Volume 33, Issue 12, pp. 1895 - 1903
Integration of volumetric heart chamber quantification by 3D echocardiography into clinical practice has been hampered by several factors which a new fully... 
Fully automated volumetric chamber quantification | Medicine & Public Health | Computed tomography | Bicuspid aortic valve | 3D echocardiography | Cardiology | Imaging / Radiology | Cardiac Imaging | Left heart model | CARDIAC & CARDIOVASCULAR SYSTEMS | VOLUMES | VALIDATION | ACCURACY | EJECTION FRACTION | 3-DIMENSIONAL ECHOCARDIOGRAPHY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | LEFT-VENTRICULAR FUNCTION | Predictive Value of Tests | Prospective Studies | Ventricular Function, Left | Aortic Valve - abnormalities | Humans | Image Interpretation, Computer-Assisted - methods | Male | Tomography, X-Ray Computed | Heart Atria - diagnostic imaging | Heart Ventricles - diagnostic imaging | Feasibility Studies | Young Adult | Adult | Female | Heart Atria - physiopathology | Software Validation | Heart Valve Diseases - physiopathology | Automation | Aortic Valve - diagnostic imaging | Models, Cardiovascular | Aortic Valve - physiopathology | Echocardiography, Three-Dimensional | Patient-Specific Modeling | Stroke Volume | Heart Ventricles - physiopathology | Atrial Function, Left | Heart Valve Diseases - diagnostic imaging | Heart valve diseases | CT imaging | Care and treatment | Algorithms | Cardiac patients | Heart | Echocardiography | Feasibility studies | Patients | Coronary artery disease | Computer programs | Aorta | Ventricle | Rheumatic heart disease | Heart diseases | Aortic valve | Original Paper
Journal Article
European Radiology, ISSN 0938-7994, 5/2006, Volume 16, Issue 5, pp. 1117 - 1123
Journal Article
Journal Article
IEEE Transactions on Medical Imaging, ISSN 0278-0062, 11/2008, Volume 27, Issue 11, pp. 1655 - 1667
Active shape models bear a great promise for model-based medical image analysis. Their practical use, though, is undermined due to the need to train such... 
gated SPECT | intensity model | SIMIND | Computational modeling | Medical simulation | Buildings | Active shape model | NCAT | Automatic model building | Image segmentation | Image analysis | Image databases | Computed tomography | Myocardium | 3D active shape model (ASM) | Biomedical imaging | Gated SPECT | Intensity model | TOMOGRAPHY | 4D-MSPECT | ENGINEERING, BIOMEDICAL | QUANTIFICATION | VALIDATION | IMAGING SCIENCE & PHOTOGRAPHIC TECHNOLOGY | LEFT-VENTRICULAR VOLUMES | ENGINEERING, ELECTRICAL & ELECTRONIC | SHAPE | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | EJECTION FRACTION | TC-99M-MIBI SPECT | SEGMENTATION | PERFUSION | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Data Interpretation, Statistical | Automatic Data Processing - methods | Information Storage and Retrieval - methods | Models, Cardiovascular | Artificial Intelligence | Humans | Tomography, X-Ray Computed - methods | Male | Image Processing, Computer-Assisted - methods | Ventricular Dysfunction, Left - diagnostic imaging | Ventricular Dysfunction, Left - physiopathology | Stroke Volume | Cardiac-Gated Single-Photon Emission Computer-Assisted Tomography - methods | Computer Simulation | Signal Processing, Computer-Assisted | Biomedical Research - methods | Female | Phantoms, Imaging | Pattern Recognition, Automated - methods | Heart | Diagnostic imaging | Models | Medical examination | Health aspects | Methods | Tomography | Heart attacks | Monte Carlo methods | Construction | Accuracy | Computer simulation | Images | Mathematical models | Image acquisition
Journal Article
Journal Article
Medical Physics, ISSN 0094-2405, 04/2015, Volume 42, Issue 4, pp. 2029 - 2043
Purpose: Rupture of atherosclerotic plaques in the carotid artery has been implicated in 20% of strokes. 3D ultrasound (US) imaging is emerging as an... 
Magnetohydrodynamics | Segmentation | biomedical ultrasonics | Bifurcations | media adventitia boundary | set theory | vessel wall volume | Biomedical instrumentation and transducers, including micro‐electro‐mechanical systems (MEMS) | Digital computing or data processing equipment or methods, specially adapted for specific applications | Ultrasonographic imaging | image segmentation | Processes or apparatus for generating mechanical vibrations of infrasonic, sonic or ultrasonic frequency | Ultrasonography | level set method | Three dimensional image processing | medical image processing | Reconstruction | Transducers | Diagnosis using ultrasonic, sonic or infrasonic waves | adventitial wall boundary | Medical image segmentation | blood vessels | Speckle | image reconstruction | Biological material, e.g. blood, urine; Haemocytometers | 3D US imaging | Vascular system | lumen intima boundary | stroke | stopping criteria | Image sensors | biomedical transducers | Image data processing or generation, in general | carotid segmentation | Logic and set theory | ultrasonic transducers | ALGORITHMS | ACCURACY | IMAGES | 3-DIMENSIONAL ULTRASOUND | TRACKING | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | TOOL | Plaque, Atherosclerotic - diagnostic imaging | Reproducibility of Results | Algorithms | Carotid Arteries - diagnostic imaging | Time Factors | Humans | Imaging, Three-Dimensional - methods | Organ Size | Carotid Stenosis - diagnostic imaging | Pattern Recognition, Automated - methods
Journal Article