Quantification of Biophysical Parameters in Medical Imaging
Tobias Schaeffter (Hrsg.), Ingolf Sack (Hrsg.)
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Springer International Publishing
Naturwissenschaften, Medizin, Informatik, Technik / Klinische Fächer
Beschreibung
The second edition of this book offers six new chapters covering the latest developments in quantitative medical imaging, including artificial intelligence, MRI mapping, sonography, elastography and cardiac CT. All the other existing chapters have been updated and expanded, many with new text and figures, to reflect the rapid translation and advancement of technology in this exciting area of biomedical research.
This updated edition presents fundamental knowledge on the imaging quantification of biophysical parameters for clinical diagnostic purposes. Clinical imaging scanners are considered by the authors as physical measurement systems capable of quantifying intrinsic parameters for the representation of the constitution and biophysical properties of tissues in vivo. In one respect, this approach fosters the development of new imaging methods for highly reproducible, system-independent, and quantitative biomarkers. These methods are greatly detailed in the book. Alternatively, this new edition equips the reader with a better understanding of how the physical properties of tissues interact with signal generation in medical imaging, opening up new insights into the complex and fascinating relationship between structure and function in living tissues.
This updated edition is of interest to all those who recognize the limitations of clinical diagnosis based primarily on visual inspection of images, and who wish to learn more about the diagnostic potential of quantitative, biophysically-based medical imaging markers, as well as the challenges posed by the scarcity of such markers for next-generation imaging technologies.
Kundenbewertungen
Imaging biomarkers, Biophysics-based medical imaging markers, Medical image processing, Imaging technology, Parameter mapping, Quantitative medical imaging, Medical technology, Imaging physics, Biophysical tissue properties