Intravascular Ultrasound: From Acquisition to Advanced Quantitative Analysis
Editat de Simone Baloccoen Limba Engleză Paperback – 8 iun 2020
- Provides an introduction to the clinical workflow and current challenges in endovascular interventions
- Presents a review of the state-of-the-art methodologies in IVUS imaging and their applications
- Includes a rich analysis of the current and potential future connections between the academic, clinical and industrial fields
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Specificații
ISBN-13: 9780128188330
ISBN-10: 0128188332
Pagini: 218
Dimensiuni: 191 x 235 mm
Greutate: 0.39 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128188332
Pagini: 218
Dimensiuni: 191 x 235 mm
Greutate: 0.39 kg
Editura: ELSEVIER SCIENCE
Public țintă
Engineers, mathematicians, physics researchers and graduate students and computer scientists working in medical imaging and stenting, biomechanics, 3D visualization, tissue characterization, plaque evolution and rupture analysis.Cuprins
1. Introduction
SECTION I: CLINICAL IVUS
2. Clinical Utility of Intravascular Ultrasound
3. Convenience of Intravascular Ultrasound in Coronary Chronic Total Occlusion Recanalization
4. Intracardiac Ultrasound
5. Quantitative Virtual Histology for In Vivo Evaluation of Human Atherosclerosis— A Plaque Biomechanics-Based Novel Image Analysis Algorithm: Validation and Applications to Atherosclerosis Research
SECTION II: IVUS IMAGE ANALYSIS
6. A State-of-the-Art Intravascular Ultrasound Diagnostic System
7. Multimodality Intravascular Imaging Technology
8. Quantitative Assessment and Prediction of Coronary Plaque Development Using Serial Intravascular Ultrasound and Virtual Histology
9. Training Convolutional Nets to Detect Calcified Plaque in IVUS Sequences
10. Computer-Aided Detection of Intracoronary Stent Location and Extension in Intravascular Ultrasound Sequences
11. Real-Time Robust Simultaneous Catheter and Environment Modeling for Endovascular Navigation
SECTION I: CLINICAL IVUS
2. Clinical Utility of Intravascular Ultrasound
3. Convenience of Intravascular Ultrasound in Coronary Chronic Total Occlusion Recanalization
4. Intracardiac Ultrasound
5. Quantitative Virtual Histology for In Vivo Evaluation of Human Atherosclerosis— A Plaque Biomechanics-Based Novel Image Analysis Algorithm: Validation and Applications to Atherosclerosis Research
SECTION II: IVUS IMAGE ANALYSIS
6. A State-of-the-Art Intravascular Ultrasound Diagnostic System
7. Multimodality Intravascular Imaging Technology
8. Quantitative Assessment and Prediction of Coronary Plaque Development Using Serial Intravascular Ultrasound and Virtual Histology
9. Training Convolutional Nets to Detect Calcified Plaque in IVUS Sequences
10. Computer-Aided Detection of Intracoronary Stent Location and Extension in Intravascular Ultrasound Sequences
11. Real-Time Robust Simultaneous Catheter and Environment Modeling for Endovascular Navigation