Biomedical photonics handbook Volume 1, Fundamentals, devices, and techniques /

The integration of photonics, electronics, biomaterials, and nanotechnology holds great promise for the future of medicine. This topic has recently experienced an explosive growth due to the noninvasive or minimally invasive nature and the cost-effectiveness of photonic modalities in medical diagnos...

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Bibliographic Details
Corporate Authors: Anne and Joseph Trachtman Memorial Book Fund, CRCnetBASE
Other Authors: Vo-Dinh, Tuan (Editor)
Format: Book
Language:English
Published: Boca Raton, FL : CRC Press, Taylor and Francis Group, [2014]
Edition:Second edition
Subjects:
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250 |a Second edition 
264 1 |a Boca Raton, FL :  |b CRC Press, Taylor and Francis Group,  |c [2014] 
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300 |a 1 online resource (xxii, 842 pages) :  |b illustrations 
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504 |a Includes bibliographical references and index 
505 0 |a Front Cover; Contents; Preface; Acknowledgments; Editor; Contributors; MATLAB Statement; Chapter 1: Biomedical Photonics: : A Revolution at the Interface of Science and Technology; Chapter 2: Optical Properties of Tissue; Chapter 3: Light-Tissue Interactions; Chapter 4: Theoretical Models and Algorithms in Optical Diffusion Tomography; Chapter 5: Basic Instrumentation in Photonics; Chapter 6: Optical Fibers and Waveguides for Medical Applications; Chapter 7: Fiber-Optic Probe Design; Chapter 8: Laser and Optical Radiation Safety in Biophotonics; Chapter 9: Biological Imaging Spectroscopy; Chapter 10: Lifetime-Based Imaging; Chapter 11: Confocal Microscopy; Chapter 12: Two-Photon Excitation Fluorescence Microscopy; Chapter 13: Laser Doppler Perfusion Monitoring and Imaging; Chapter 14: Light Scattering Spectroscopy and Imaging of Cellular and Subcellular Events; Chapter 15: Tissue Viability Imaging; Chapter 16: Photothermal Detection and Tracking of Individual Nonfluorescent Nanosystems; Chapter 17: Thermal Imaging for Biological and Medical Diagnostics; Chapter 18: Multidimensional Fluorescence Imaging of Biological Tissue; Chapter 19: Speckle Correlometry; Chapter 20: Spectroscopic Data in Biological and Biomedical Analysis 
506 |a Restricted for use by site license 
520 |a The integration of photonics, electronics, biomaterials, and nanotechnology holds great promise for the future of medicine. This topic has recently experienced an explosive growth due to the noninvasive or minimally invasive nature and the cost-effectiveness of photonic modalities in medical diagnostics and therapy. The second edition of the Biomedical Photonics Handbook presents recent fundamental developments as well as important applications of biomedical photonics of interest to scientists, engineers, manufacturers, teachers, students, and clinical providers. The first volume, Fundamentals, Devices, and Techniques, focuses on the fundamentals of biophotonics, optical techniques, and devices. Represents the Collective Work of over 150 Scientists, Engineers, and Clinicians, Designed to display the most recent advances in instrumentation and methods, as well as clinical applications in important areas of biomedical photonics to a broad audience, this three-volume handbook provides an inclusive forum that serves as an authoritative reference source for a broad audience involved in the research, teaching, learning, and practice of medical technologies. What's New in This Edition, A wide variety of photonic biochemical sensing technologies has already been developed for clinical monitoring of physiological parameters, such as blood pressure, blood chemistry, pH, temperature, and the presence of pathological organisms or biochemical species of clinical importance. Advanced photonic detection technologies integrating the latest knowledge of genomics, proteomics, and metabolomics allow sensing of early disease states, thus revolutionizing the medicine of the future. Nanobiotechnology has opened new possibilities for detection of biomarkers of disease, imaging single molecules, and in situ diagnostics at the single-cell level. In addition to these state-of-the-art advancements, the second edition contains new topics and chapters including: Fiber Optic Probe Design, Laser and Optical Radiation Safety, Photothermal Detection, Multidimensional Fluorescence Imaging, Surface Plasmon Resonance imaging, Molecular Contrast Optical Coherence Tomography, Multiscale Photoacoustics, Polarized Light for Medical Diagnostics, Quantitative Diffuse Reflectance Imaging, Interferomctric Light Scattering, Nonlinear Tnterferometric Vibrational Imaging, Multimodality Theranostics Nanoplatforms, Nanoscintillator-Based Therapy, SERS Molecular Sentinel Nanoprobes, Plasmonic Coupling Interference Nanoprobes, Comprised of three books: Volume T: Fundamentals, Devices, and Techniques; Volume II: Biomedical Diagnostics; and Volume III: Therapeutics and Advanced Biophotonics, this second edition contains eight sections and provides introductory material in each chapter. It also includes an overview of the topic, an extensive collection of spectroscopic data, and lists of references for further reading. Book jacket 
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