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Ebook: Mathematical Modeling in Biomedical Imaging II: Optical, Ultrasound, and Opto-Acoustic Tomographies

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27.01.2024
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This volume reports on recent mathematical and computational advances in optical, ultrasound, and opto-acoustic tomographies. It outlines the state-of-the-art and future directions in these fields and provides readers with the most recently developed mathematical and computational tools. It is particularly suitable for researchers and graduate students in applied mathematics and biomedical engineering.




This volume reports on recent mathematical and computational advances in optical, ultrasound, and opto-acoustic tomographies. It outlines the state-of-the-art and future directions in these fields and provides readers with the most recently developed mathematical and computational tools. It is particularly suitable for researchers and graduate students in applied mathematics and biomedical engineering.


This volume reports on recent mathematical and computational advances in optical, ultrasound, and opto-acoustic tomographies. It outlines the state-of-the-art and future directions in these fields and provides readers with the most recently developed mathematical and computational tools. It is particularly suitable for researchers and graduate students in applied mathematics and biomedical engineering.
Content:
Front Matter....Pages i-ix
Direct Reconstruction Methods in Optical Tomography....Pages 1-29
Direct Reconstruction Methods in Ultrasound Imaging of Small Anomalies....Pages 31-55
Photoacoustic Imaging for Attenuating Acoustic Media....Pages 57-84
Attenuation Models in Photoacoustics....Pages 85-130
Quantitative Photoacoustic Tomography....Pages 131-158
Back Matter....Pages 159-160


This volume reports on recent mathematical and computational advances in optical, ultrasound, and opto-acoustic tomographies. It outlines the state-of-the-art and future directions in these fields and provides readers with the most recently developed mathematical and computational tools. It is particularly suitable for researchers and graduate students in applied mathematics and biomedical engineering.
Content:
Front Matter....Pages i-ix
Direct Reconstruction Methods in Optical Tomography....Pages 1-29
Direct Reconstruction Methods in Ultrasound Imaging of Small Anomalies....Pages 31-55
Photoacoustic Imaging for Attenuating Acoustic Media....Pages 57-84
Attenuation Models in Photoacoustics....Pages 85-130
Quantitative Photoacoustic Tomography....Pages 131-158
Back Matter....Pages 159-160
....
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