Gennadi Saiko
Physiological Optical Imaging (eBook, PDF)
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Gennadi Saiko
Physiological Optical Imaging (eBook, PDF)
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Physiological optical imaging is a group of emerging technologies that aim to provide healthcare practitioners and biomedical researchers with information about tissue physiology or pathophysiology using approaches different from traditional medical imaging (PET, ultrasound, MRI, X-ray, or CT scan).
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Physiological optical imaging is a group of emerging technologies that aim to provide healthcare practitioners and biomedical researchers with information about tissue physiology or pathophysiology using approaches different from traditional medical imaging (PET, ultrasound, MRI, X-ray, or CT scan).
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Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 272
- Erscheinungstermin: 10. Dezember 2024
- Englisch
- ISBN-13: 9781040252260
- Artikelnr.: 72255479
- Verlag: Taylor & Francis
- Seitenzahl: 272
- Erscheinungstermin: 10. Dezember 2024
- Englisch
- ISBN-13: 9781040252260
- Artikelnr.: 72255479
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Gennadi Saiko is an accomplished scientist and entrepreneur with a successful track record in world-famous research institutes (Institute of General Physics, Moscow, Princess Margaret Hospital, Toronto), Fortune 500 companies (American Express), world-renowned universities (Friedrich-Alexander-University of Erlangen-Nürnberg, Moscow Institute of Physics and Technology, Toronto Metropolitan University), and startups (Infinium Capital, Oxilight Inc, Swift Medical Inc). Gennadi has received MSc and Ph.D. in physics from the Moscow Institute of Physics and Technology. His primary interest is in the development of innovative optical imaging modalities for healthcare, with primary focus on wound care, cardiology, emergency, and critical care. He combines both academic and industrial expertise. Gennadi has successful experience in IP development and commercialization in MedTech. In particular, he developed a handheld multimodal imaging system primarily used in wound care, which Swift Medical Inc commercialized as Swift Ray 1. Gennadi authored more than 40 publications in peer-reviewed journals, two books, seven book chapters, and several patents. In addition, he delivered more than 30 presentations at international scientific conferences and chaired sessions at multiple international conferences. Gennadi is a reviewer at more than 20 peer-reviewed journals and serves on boards of several scientific journals. Gennadi is Adjunct Professor of the Department of Physics at Toronto Metropolitan University (formerly Ryerson University).
Chapter 1: What is Physiological Optical Imaging? Chapter 2: Resolution of
Physiological Optical Imaging Techniques. Chapter 3: Contrast Ratio in
Physiological Optical Imaging. Chapter 4: Sampling Depth in Physiological
Optical Imaging. Chapter 5: Absorption-Based Physiological Optical Imaging
Techniques. Chapter 6: Scattering-Based Physiological Optical Imaging
Techniques. Chapter 7: Fluorescence-Based Physiological Optical Imaging
Techniques. Chapter 8: Thermographic Physiological Optical Imaging
Techniques. Chapter 9: Vibrational and Terahertz Techniques in
Physiological Optical Imaging. Chapter 10: Other Approaches in
Physiological Optical Imaging. Chapter 11: Endoscopic Physiological Optical
Imaging. Chapter 12: Microscopic Physiological Optical Imaging. Chapter 13:
Future Directions in Physiological Optical Imaging. Appendix A: Surface
Tissues Morphology. Appendix B: Light Propagation in Tissues.
Physiological Optical Imaging Techniques. Chapter 3: Contrast Ratio in
Physiological Optical Imaging. Chapter 4: Sampling Depth in Physiological
Optical Imaging. Chapter 5: Absorption-Based Physiological Optical Imaging
Techniques. Chapter 6: Scattering-Based Physiological Optical Imaging
Techniques. Chapter 7: Fluorescence-Based Physiological Optical Imaging
Techniques. Chapter 8: Thermographic Physiological Optical Imaging
Techniques. Chapter 9: Vibrational and Terahertz Techniques in
Physiological Optical Imaging. Chapter 10: Other Approaches in
Physiological Optical Imaging. Chapter 11: Endoscopic Physiological Optical
Imaging. Chapter 12: Microscopic Physiological Optical Imaging. Chapter 13:
Future Directions in Physiological Optical Imaging. Appendix A: Surface
Tissues Morphology. Appendix B: Light Propagation in Tissues.
Chapter 1: What is Physiological Optical Imaging? Chapter 2: Resolution of
Physiological Optical Imaging Techniques. Chapter 3: Contrast Ratio in
Physiological Optical Imaging. Chapter 4: Sampling Depth in Physiological
Optical Imaging. Chapter 5: Absorption-Based Physiological Optical Imaging
Techniques. Chapter 6: Scattering-Based Physiological Optical Imaging
Techniques. Chapter 7: Fluorescence-Based Physiological Optical Imaging
Techniques. Chapter 8: Thermographic Physiological Optical Imaging
Techniques. Chapter 9: Vibrational and Terahertz Techniques in
Physiological Optical Imaging. Chapter 10: Other Approaches in
Physiological Optical Imaging. Chapter 11: Endoscopic Physiological Optical
Imaging. Chapter 12: Microscopic Physiological Optical Imaging. Chapter 13:
Future Directions in Physiological Optical Imaging. Appendix A: Surface
Tissues Morphology. Appendix B: Light Propagation in Tissues.
Physiological Optical Imaging Techniques. Chapter 3: Contrast Ratio in
Physiological Optical Imaging. Chapter 4: Sampling Depth in Physiological
Optical Imaging. Chapter 5: Absorption-Based Physiological Optical Imaging
Techniques. Chapter 6: Scattering-Based Physiological Optical Imaging
Techniques. Chapter 7: Fluorescence-Based Physiological Optical Imaging
Techniques. Chapter 8: Thermographic Physiological Optical Imaging
Techniques. Chapter 9: Vibrational and Terahertz Techniques in
Physiological Optical Imaging. Chapter 10: Other Approaches in
Physiological Optical Imaging. Chapter 11: Endoscopic Physiological Optical
Imaging. Chapter 12: Microscopic Physiological Optical Imaging. Chapter 13:
Future Directions in Physiological Optical Imaging. Appendix A: Surface
Tissues Morphology. Appendix B: Light Propagation in Tissues.