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Algorithmen zur Koronargefäßsegmentierung in der Cine-Kardioangiography
Translated title of the contribution
:
Coronary Vessel Segmentation Algorithms for Cine-Angiography Image Data
Gerald Adam Zwettler
Research Center Hagenberg
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Dive into the research topics of 'Coronary Vessel Segmentation Algorithms for Cine-Angiography Image Data'. Together they form a unique fingerprint.
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Keyphrases
Linz
100%
Image Data
100%
Vessel Segmentation
100%
Segmentation Algorithm
100%
Cineangiography
100%
Angiographic Images
100%
Coronary Vessels
100%
Two Dimensional
50%
Automatic Segmentation
50%
Vessel Tree
50%
Automated Method
50%
Universities of Applied Sciences
25%
Upper Austria
25%
Contractility
25%
Software System
25%
Red Cross
25%
Gabor Filter
25%
Manual Segmentation
25%
Three Dimensional Model
25%
General Hospital
25%
E-competences
25%
Three-dimensional Analysis
25%
Mathematical Morphology
25%
Biomedical Parameters
25%
Stem Cells
25%
Human Tissue
25%
Competence Centers
25%
Grayscale Image
25%
Wall Dynamics
25%
Motion Pattern
25%
Contour Detection
25%
Center Detection
25%
Three-dimensional Modeling
25%
Myocardial Infarction Patients
25%
Heart Attack
25%
Manual Method
25%
Nearly Optimal
25%
Wall Motion
25%
Region Classification
25%
Cardiac Cycle
25%
Cardiac Stem Cell Therapy
25%
Left Ventricle
25%
Cine
25%
X-ray Angiography
25%
Autologous Stem Cells
25%
Human Heart
25%
Muscle Area
25%
Blood Center
25%
Border Detection
25%
Contrast Enhancement
25%
Novel Algorithm
25%
Biplane
25%
Ejection Fraction
25%
Expressive Model
25%
Heart Wall
25%
Cardiologists
25%
Segmented Structure
25%
Statistical Regions
25%
Vessel Preparation
25%
Engineering
Two Dimensional
100%
Image Data
100%
Stem Cell
100%
Software Systems
50%
Gabor Filter
50%
Three-Dimensional Models
50%
Data Model
50%
Dimensional Modeling
50%
Research Group
50%
Dimensional Analysis
50%
Grayscale Image
50%
Segmented Structure
50%
Segmented Region
50%
Mathematical Morphology
50%
Centerline
50%
Cardiac Stem Cell
50%
Medicine and Dentistry
Coronary Vessel
100%
Cineangiography
100%
Stem Cell
66%
Angiography
66%
Myocardial Infarction
66%
Muscle Contractility
33%
Clinical Study
33%
Cooperation
33%
Stem Cell Therapy
33%
Human Tissue
33%
Heart Cycle
33%
Cardiac Stem Cell
33%
Ejection Fraction
33%
Left Ventricle
33%
Computer Science
Vessel Segmentation
100%
segmentation algorithm
100%
Software Systems
50%
Manual Segmentation
50%
Data Model
50%
Dimensional Model
50%
Dimensional Modeling
50%
Mathematical Morphology
50%
Motion Pattern
50%
Dimensional Analysis
50%
Immunology and Microbiology
Stem Cell
100%
Dynamics
50%
Muscle Contractility
50%
Heart Cycle
50%
Motion
50%
Cardiac Stem Cell
50%
Heart Ejection Fraction
50%
Stem Cell Transplantation
50%
Human Tissue
50%
Material Science
Stem Cell
100%