Biomedical Photonics Handbook, 3 Volume Set -

Biomedical Photonics Handbook, 3 Volume Set

Tuan Vo-Dinh (Herausgeber)

Media-Kombination
2512 Seiten
2014 | 2nd edition
Crc Press Inc
978-1-4398-0444-5 (ISBN)
409,95 inkl. MwSt
Shaped by Quantum Theory, Technology, and the Genomics Revolution

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 fundamental developments as well as important applications of biomedical photonics of interest to scientists, engineers, manufacturers, teachers, students, and clinical providers.

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 have 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 state biomarkers, 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
Interferometric Light Scattering
Nonlinear Interferometric Vibrational Imaging
Multimodality Theranostics Nanoplatforms
Nanoscintillator-Based Therapy
SERS Molecular Sentinel Nanoprobes
Plasmonic Coupling Interference Nanoprobes

Comprised of three books: Volume I: 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.

Tuan Vo-Dinh

Volume One: Photonics and Tissue Optics. Optical Properties of Tissues. Light-Tissue Interactions. Theoretical Models and Algorithms in Optical Diffusion Tomography. Basic Instrumentation. Basic Instrumentation in Photonics. Optical Fibers and Waveguides for Medical Applications. Fiberoptics Probe Design. Laser and Optical Radiation Safety in Biophotonics. Photonic Detection and Imaging Techniques. Biological Imaging Spectroscopy. Lifetime-Based Imaging. Confocal Microscopy. Two-Photon Excitation Fluorescence Microscopy. Laser Doppler Perfusion Monitoring and Imaging. Light Scatter Spectroscopy and Imaging of Cellular and Subcellular Events. Tissue Viability Imaging. Photothermal Detection and Tracking of Individual Non-fluorescent Nanosystems. Thermal Imaging. Multidimensional fluorescence imaging of biological tissue. Speckle Correlometry. Spectroscopic Data in Biological and Biomedical Analysis

Volume Two: Biomedical Analysis, Sensing and Imaging. Biosensors for Medical Applications. Glucose Monitoring. Biochips and MicroArrays: Tools for the New Medicine. Atomic Spectroscopy for Biological and Clinical Analysis. Flow Cytometry. Capillary Electrophoresis Techniques in Biomedical Analysis. Surface Plasmon Resonance Imaging: Principle, Development, and Biomedical Applications. Surface-Enhanced Raman Scattering (SERS) for Biomedical Diagnostics. Functional Imaging with Diffusing Light. Molecular Contrast Optical Coherence Tomography. Multiscale Photoacoustic Microscopy and Macroscopy. Polarized light for Medical Diagnostics. Optical Pumping and MRI of Hyperpolarized Spins. Biomedical Diagnostics and Optical Biopsy. Fluorescence Spectroscopy for Biomedical Diagnostics. Elastic-Scattering Spectroscopy and Diffuse Reflectance. Quantitative Diffuse Reflectance Imaging of Tumor Margins. Near Infrared Fluorescence Imaging and Spectroscopy in Random Media and Tissues. Interferometric light scattering techniques for measuring nuclear morphology and detecting dysplasia. Ultrasonically Modulated Optical Imaging. Optoacoustic Tomography. Raman Spectroscopy: From Benchtop to Bedside. Fourier Transform Infrared (FTIR) Microspectroscopic Methods for Biomedical Analyses: From Single Point Detection to Two-Dimensional Imaging. Photon Migration Spectroscopy Frequency-Domain Techniques.

Volume Three: Therapeutic and Interventional Techniques. Mechanistic Principles of Photodynamic Therapy. Synthesis and Biological Significance of Porphyrin-based Photosensitizers in Photodynamic Therapy. Lasers in Dermatology. Lasers in Interventional Pulmonology. Lasers in Diagnostics and Treatment of Brain Diseases. Lasers in Ophthalmology. Lasers in Otolaryngology. Therapeutic Applications of Lasers in Gastroenterology. Low-Power Laser Therapy. Image Guided Surgery. Optical Methods for Caries Detection, Diagnosis and Therapeutic Intervention. Nonlinear Interferometric Vibrational Imaging and Spectroscopy. Multifunctional Theranostic Platform: Plasmonic-Active Gold Nanostars. Activity of psoralen-functionalized nanoscintillators against cancer cells upon X-ray excitation. Advanced Biophotonics and Nanophotonics . Living Cell Analysis Using Optical Methods. Amplification Techniques for Optical Detection. Fluorescent Probes in Biomedical Applications. Optical Trapping Techniques in Bioanalysis, . Luminescent Nanoparticle-Based Probes for Bioassays, . Fluorescent Molecular Beacon Nucleic Acid Probes for Biomolecular Recognition. Luminescent Quantum Dots for Diagnositc and Bioimaging Applications. PEBBLE nanosensors for in vitro bioanalysis. Nanosensors for Single-Cell Analyses. SERS Molecular Sentinel Nanoprobes to Detect Biomarkers for Medical Diagnostics. Plasmonic Coupling Interference (PCI) Nanoprobes for Gene Diagnostics. DNA Sequencing using Fluorescence Detection. In Vivo Bioluminescence Imaging as a Tool for Drug Development.

Erscheint lt. Verlag 8.8.2014
Zusatzinfo 84 Tables, black and white; 827 Illustrations, black and white
Verlagsort Bosa Roca
Sprache englisch
Maße 178 x 254 mm
Gewicht 4717 g
Themenwelt Mathematik / Informatik Informatik Theorie / Studium
Medizin / Pharmazie Physiotherapie / Ergotherapie Orthopädie
Naturwissenschaften Physik / Astronomie Optik
Technik Medizintechnik
ISBN-10 1-4398-0444-3 / 1439804443
ISBN-13 978-1-4398-0444-5 / 9781439804445
Zustand Neuware
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