Handbook of Optical Biomedical Diagnostics
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Part 1 Physics of Light-Tissue Interaction - Diagnostical Aspects: Introduction to Light Scattering by Biological Objects Optics of Blood Propagation of Pulses and Photon Density Waves in Turbid Media Coherence Phenomena and Statistical Properties of Multiply Scattered Light Tissue Phantoms. Part 2 Pulse and Frequency-Domain Techniques for Tissue Spectroscopy and Imaging: Time-Resolved Imaging in Diffusive Media Frequency-Domain Techniques for Tissue Spectroscopy and Imaging Monitoring of Brain Activity With Near-Infrared Spectroscopy Signal Quantification and Localization in Tissue Near-Infrared Spectroscopy Time-Resolved Detection of Optoacoustic Profiles for Measurement of Optical Energy Distribution in Tissues. Part 3 Scattering, Fluorescence, and Infrared Fourier Transform Spectroscopy of Tissues: Light Back Scattering Spectroscopy of Epithelial Tissues - Principles and Applications Reflectance and Fluorescence Spectroscopy of Human Skin in Vivo Infrared and Raman Spectroscopy of Human Skin in Vivo Fluorescence Technologies in Biomedical Diagnostics. Part 4 Coherent-Domain Methods for Biological Flows and Tissue Ultrastructure Monitoring: Speckle and Doppler Methods of Blood and Lymph Flow Monitoring Real-Time Imaging of Microstructure and Blood Flows Using Optical Coherence Tomography Speckle Technologies for Monitoring and Imaging of Tissues and Tissue-Like Phantoms Optical Assessment of Tissue Mechanics.