Despite a number of books on biophotonics imaging for medical diagnostics and therapy, the field still lacks a comprehensive imaging book that describes state-of-the-art biophotonics imaging approaches intensively developed in recent years. Addressing this shortfall, Advanced Biophotonics presents contemporary methods and applications of biophotonics imaging. Gathering research otherwise scattered in numerous physical, chemical, biophysical, and biomedical journals, the book helps researchers, bioengineers, and medical doctors understand major recent bioimaging technologies and the underlying biophotonics science.…mehr
Despite a number of books on biophotonics imaging for medical diagnostics and therapy, the field still lacks a comprehensive imaging book that describes state-of-the-art biophotonics imaging approaches intensively developed in recent years. Addressing this shortfall, Advanced Biophotonics presents contemporary methods and applications of biophotonics imaging. Gathering research otherwise scattered in numerous physical, chemical, biophysical, and biomedical journals, the book helps researchers, bioengineers, and medical doctors understand major recent bioimaging technologies and the underlying biophotonics science.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Ruikang K. Wang, PhD, is a professor of bioengineering at the University of Washington. A fellow of the Optical Society of America, Dr. Wang has authored or co-authored more than 200 peer-reviewed journal articles, one book on optical information processing, and 12 book chapters. His research interests include biophotonics and imaging, optical coherence tomography, optical microangiography, and their applications in neurology, ophthalmology, dermatology, and cancer. Valery V. Tuchin, PhD, holds the Optics and Biophotonics Chair and is a director of the Research-Educational Institute of Optics and Biophotonics at Saratov State University. He is also head of the Laboratory on Laser Diagnostics of Technical and Living Systems at the Russian Academy of Science's Institute of Precise Mechanics and Control and a Finland Distinguished Professor in the Optoelectronics and Measurement Techniques Laboratory at the University of Oulu. A SPIE fellow, Dr. Tuchin has authored numerous books and more than 300 peer-reviewed papers. His research interests include biophotonics, biomedical optics and laser medicine, and physics of optical and laser measurements.
Inhaltsangabe
Monte Carlo Modeling of Photon Migration for the Needs of Biomedical Optics and Biophotonics. Quantitative Polarimetry for Tissue Characterization and Diagnosis. Spatial and Temporal Frequency Domain Imaging. Multiphoton Microscopy and SHG. Optical Coherence Tomography: Technical Aspect. Speckle in Optical Coherence Tomography. Optical Coherence Tomography and Light-Induced Fluorescence: Optical Slicing plus Biochemical Probing. Multimodal Tomography Combining Optical Coherence Tomography with Fluorescence Laminar Optical Tomography. Advances in Blood Flow Imaging. Optical Microangiography. High-Speed Photoacoustic Tomography. Optoacoustic Molecular Imaging: Methods and Applications. Multimodal Microscopy for Comprehensive Tissue Characterizations. Adaptive Optics Scanning Laser Ophthalmoscopy (AOSLO). Intrinsic Optical Signal Imaging of Retinal Function at Cellular Resolution. Isometric 3D Imaging of Cellular Samples Using Optical Projection Tomographic Microscopy. Tissue Optical Clearing.
Monte Carlo Modeling of Photon Migration for the Needs of Biomedical Optics and Biophotonics. Quantitative Polarimetry for Tissue Characterization and Diagnosis. Spatial and Temporal Frequency Domain Imaging. Multiphoton Microscopy and SHG. Optical Coherence Tomography: Technical Aspect. Speckle in Optical Coherence Tomography. Optical Coherence Tomography and Light-Induced Fluorescence: Optical Slicing plus Biochemical Probing. Multimodal Tomography Combining Optical Coherence Tomography with Fluorescence Laminar Optical Tomography. Advances in Blood Flow Imaging. Optical Microangiography. High-Speed Photoacoustic Tomography. Optoacoustic Molecular Imaging: Methods and Applications. Multimodal Microscopy for Comprehensive Tissue Characterizations. Adaptive Optics Scanning Laser Ophthalmoscopy (AOSLO). Intrinsic Optical Signal Imaging of Retinal Function at Cellular Resolution. Isometric 3D Imaging of Cellular Samples Using Optical Projection Tomographic Microscopy. Tissue Optical Clearing.
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