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Table of contents
Table of contents
Introduction Chapter
1.1. Introduction
1.2. Anatomy of the human heart
1.3. Clinical tools for cardiologists
1.3.1. Electrocardiogram
1.3.2. Magnetic Resonance Imaging
1.3.3. X-rays
1.3.4. Nuclear medicine
1.3.5. Ultrasounds
1.3.6. Current limits of clinical tools
1.4. Ultrafast ultrasound imaging
1.4.1. Plane waves, diverging waves and coherent compounding
1.4.2. Elastography
1.4.3. Ultrafast Doppler
1.4.4. Imaging the propagation of natural waves
1.4.5. 3D ultrafast ultrasound imaging
1.5. Thesis objectives
1.6. Chapter bibliography
3D Ultrafast Ultrasound Imaging
2.1. Introduction
2.2. Presentation of the 3D ultrafast ultrasound scanners and probes
2.3. Development of specific tools
2.3.1. Real-time imaging
2.3.2. Visualisation tools
2.4. Conclusion
2.5. Chapter bibliography
3D Backscatter Tensor Imaging
3.1. Introduction
3.1.1. Motivations
3.1.2. State of the art
3.1.3. Objectives
3.2. 3D Mapping of cardiac fibres orientation
3.2.1. Material and methods
3.2.2. Results
3.2.3. Discussion
3.3. Correction of aberrations due to movement
3.3.1. Material and methods
3.3.2. Results
3.3.3. Discussion
3.4. Conclusion
3.5. Chapter bibliography
3D passive elastography of the left ventricle
4.1. Introduction
4.1.1. Motivations: why myocardial stiffness in interesting
4.1.2. State of the art: how to measure (myocardial) stiffness
4.1.3. Objectives: non-invasive passive elastography
4.2. Material and methods
4.2.1. Simulation
4.2.2. Ultrafast Ultrasound Imaging in-vivo
4.2.3. Post processing computation
4.3. Results
4.3.1. Simulations
4.3.2. In-vivo experiments
4.4. Discussion
4.5. Conclusion
4.6. Chapter Bibliography
3D Ultrafast Imaging of Myocardial Contraction Activation
5.1. Introduction
5.2. State of the art, motivation, objectives
5.2.1. Electrophysiology of the heart and electrocardiogram
5.2.2. Imaging the cardiac electrophysiology
5.2.3. Imaging the cardiac contraction
5.2.4. Objectives
5.3. 3D mapping
5.3.1. Material and methods
5.3.2. Results
5.3.3. Discussion
5.4. Toward clinical applications
5.4.1. Material and methods
5.4.2. Results
5.4.3. Discussion
5.5. Conclusion
5.6. Chapter Bibliography
Conclusion




