"Polarization-Based Optical Imaging for Clinical Diagnostics" presents a comprehensive methodology for optical mapping of biological tissues and fluids using 3D Jones-Mueller digital holography. It covers physical principles, experimental systems, and data analysis algorithms, offering a unified theory for polarization-based diagnostics. The book includes applications in oncology, cardiology, gynecology, and forensic medicine, demonstrating its clinical relevance. What sets this book apart is its integration of statistical, fractal, and wavelet analyses with advanced imaging techniques, enabling precise differentiation of pathological states. It also features software tools and image libraries, making it both a reference and a practical guide for modern biomedical diagnostics.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Yurii Ushenko, PhD, is a physicist and computer scientist affiliated with Shaoxing University in China and Yuriy Fedkovych Chernivtsi National University in Ukraine. His research focuses on biophotonics, optical imaging, and digital holography for biomedical diagnostics.
Weidong Dou, PhD, is a physicist at Shaoxing University, China. His expertise lies in laser optics and biomedical imaging systems, with a focus on developing advanced diagnostic technologies using polarization-sensitive methods.
Oleksandr Ushenko, PhD, is a researcher in multimedia and optical technologies at Yuriy Fedkovych Chernivtsi National University. His work centers on digital holography and optical mapping techniques for clinical applications.
Oleksandr Dubolazov, PhD, is a specialist in printing and optical technologies at Yuriy Fedkovych Chernivtsi National University. He contributes to algorithm development for biomedical image analysis and optical diagnostics.
Iryna Soltys, PhD, is a researcher in optical technologies at Yuriy Fedkovych Chernivtsi National University. Her interests include polarization imaging and the application of digital holography in medical diagnostics.
Unified polarization imaging theory for preclinical disease detection and diagnostics
Detecting pathological tissue changes before clinical symptoms emerge requires imaging methods with high structural sensitivity. Polarization-Based Optical Imaging for Clinical Diagnostics presents a unified phenomenological theory integrating polarization interferometry, Mueller and Jones matrix mapping, digital holography, and phase scanning. Edited by a team of optical physicists with collectively over 1,000 Scopus-indexed publications, this reference establishes a coherent framework for 3D Jones-Mueller digital holographic mapping of biological tissues and fluids.
The book details physical principles, experimental optical systems, and data analysis algorithms combining statistical, fractal, and wavelet approaches to differentiate pathological states with precision. Clinical applications span oncology, cardiology, gynecology, and forensic medicine, each demonstrated through concrete diagnostic scenarios. Software tools and image libraries accompany the methodology, enabling direct implementation of polarization-based diagnostic protocols in laboratory and clinical settings.
Readers will also find:
Polarization-Based Optical Imaging for Clinical Diagnostics serves biophysicists, clinical physicists, radiologists, and biomedical engineers seeking a rigorous, application-ready reference for polarization-based tissue characterization. By unifying theory, experimental methodology, and clinical validation in a single volume, it equips researchers and practitioners to advance non-invasive preclinical diagnostics.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
Vendeur : Grand Eagle Retail, Bensenville, IL, Etats-Unis
Hardcover. Etat : new. Hardcover. Unified polarization imaging theory for preclinical disease detection and diagnostics Detecting pathological tissue changes before clinical symptoms emerge requires imaging methods with high structural sensitivity. Polarization-Based Optical Imaging for Clinical Diagnostics presents a unified phenomenological theory integrating polarization interferometry, Mueller and Jones matrix mapping, digital holography, and phase scanning. Edited by a team of optical physicists with collectively over 1,000 Scopus-indexed publications, this reference establishes a coherent framework for 3D Jones-Mueller digital holographic mapping of biological tissues and fluids. The book details physical principles, experimental optical systems, and data analysis algorithms combining statistical, fractal, and wavelet approaches to differentiate pathological states with precision. Clinical applications span oncology, cardiology, gynecology, and forensic medicine, each demonstrated through concrete diagnostic scenarios. Software tools and image libraries accompany the methodology, enabling direct implementation of polarization-based diagnostic protocols in laboratory and clinical settings. Readers will also find: A unified phenomenological framework connecting polarization interferometry, Mueller matrix mapping, Jones matrix mapping, digital holography, and phase scanning techniquesDetailed algorithms for statistical, fractal, and wavelet analysis applied to optical mapping data from biological tissues and fluidsClinical diagnostic applications in oncology, cardiology, gynecology, and forensic medicine with pathological state differentiation methodsSoftware tools and image libraries supporting direct implementation of 3D Jones-Mueller digital holographic mapping protocolsExperimental system designs for polarization-based optical mapping enabling non-invasive preclinical detection of cancer, diabetes, and cardiovascular conditions Polarization-Based Optical Imaging for Clinical Diagnostics serves biophysicists, clinical physicists, radiologists, and biomedical engineers seeking a rigorous, application-ready reference for polarization-based tissue characterization. By unifying theory, experimental methodology, and clinical validation in a single volume, it equips researchers and practitioners to advance non-invasive preclinical diagnostics. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9783527414697
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Vendeur : CitiRetail, Stevenage, Royaume-Uni
Hardcover. Etat : new. Hardcover. Unified polarization imaging theory for preclinical disease detection and diagnostics Detecting pathological tissue changes before clinical symptoms emerge requires imaging methods with high structural sensitivity. Polarization-Based Optical Imaging for Clinical Diagnostics presents a unified phenomenological theory integrating polarization interferometry, Mueller and Jones matrix mapping, digital holography, and phase scanning. Edited by a team of optical physicists with collectively over 1,000 Scopus-indexed publications, this reference establishes a coherent framework for 3D Jones-Mueller digital holographic mapping of biological tissues and fluids. The book details physical principles, experimental optical systems, and data analysis algorithms combining statistical, fractal, and wavelet approaches to differentiate pathological states with precision. Clinical applications span oncology, cardiology, gynecology, and forensic medicine, each demonstrated through concrete diagnostic scenarios. Software tools and image libraries accompany the methodology, enabling direct implementation of polarization-based diagnostic protocols in laboratory and clinical settings. Readers will also find: A unified phenomenological framework connecting polarization interferometry, Mueller matrix mapping, Jones matrix mapping, digital holography, and phase scanning techniquesDetailed algorithms for statistical, fractal, and wavelet analysis applied to optical mapping data from biological tissues and fluidsClinical diagnostic applications in oncology, cardiology, gynecology, and forensic medicine with pathological state differentiation methodsSoftware tools and image libraries supporting direct implementation of 3D Jones-Mueller digital holographic mapping protocolsExperimental system designs for polarization-based optical mapping enabling non-invasive preclinical detection of cancer, diabetes, and cardiovascular conditions Polarization-Based Optical Imaging for Clinical Diagnostics serves biophysicists, clinical physicists, radiologists, and biomedical engineers seeking a rigorous, application-ready reference for polarization-based tissue characterization. By unifying theory, experimental methodology, and clinical validation in a single volume, it equips researchers and practitioners to advance non-invasive preclinical diagnostics. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9783527414697
Quantité disponible : 1 disponible(s)