The dissertation brings together diverse domains of imaging physics and multiscale image processing to achieve improved optoacoustic imaging performance in terms of automation and accurate reconstruction, better mapping of optical and acoustic parameters, and improved resolution. The developed algorithms address the common goal of improving the visual image quality of optoacoustic images, using computer vision and image analysis techniques. In particular, their application in two biomedical imaging case studies was demonstrated, i.e. for in vitro fertilization and intravital imaging in oncology.
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The dissertation brings together diverse domains of imaging physics and multiscale image processing to achieve improved optoacoustic imaging performance in terms of automation and accurate reconstruction, better mapping of optical and acoustic parameters, and improved resolution. The developed algorithms address the common goal of improving the visual image quality of optoacoustic images, using computer vision and image analysis techniques. In particular, their application in two biomedical imag...
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