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The main idea behind this book is to present a rigorous derivation of the equations that govern light propagation in highly scattering media, with an emphasis on their applications in imaging in biology and medicine. The equations and formulas for diffuse light propagation are derived from the very beginning and all the necessary analytical expressions needed to complete a complex imaging or characterization problem are presented step by step. This book provides postgraduate and PhD students with the basic framework and sufficient knowledge in light transport and the related mathematical methods to solve most complex problems that may appear in biomedical applications involving multiple scattered light. All results presented are formal analytical derivations from the complete problem, presenting, in those cases which are relevant, approximations to these expressions.
Light --- Medicine. --- Biology. --- Life sciences --- Biomass --- Life (Biology) --- Natural history --- Health Workforce --- Light scattering --- Scattering of light --- Diffusion --- Particles --- Reflection (Optics) --- Refraction --- Scattering (Physics) --- Scattering. --- Tissues --- Transmission --- Mathematical models --- Optical properties --- Light - Transmission - Mathematical models --- Tissues - Optical properties
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The second edition of 'Optical-Thermal Response of Laser-Irradiated Tissue' maintains the standard of excellence established in the first edition, while adjusting the content to reflect changes in tissue optics and medical applications since 1995. The material concerning light propagation now contains new chapters devoted to electromagnetic theory for coherent light. The material concerning thermal laser-tissue interactions contains a new chapter on pulse ablation of tissue. The medical applications section now includes several new chapters on Optical Coherent Tomography, acoustic imaging, molecular imaging, forensic optics and nerve stimulation. A detailed overview is provided of the optical and thermal response of tissue to laser irradiation along with diagnostic and therapeutic examples including fiber optics. Sufficient theory is included in the book so that it is suitable for a one or two semester graduate or for senior elective courses. Material covered includes: 1. light propagation and diagnostic application; 2. the thermal response of tissue and therapeutic application; 3. denaturation; 4. ablation. The theory and applications provide researchers with sufficient detail that this volume will become the primary reference for laser-tissue interactions and medical applications.
Biomedical engineering. --- Lasers -- Physiological effect. --- Lasers. --- Light. --- Radiation Effects. --- Thermal Conductivity. --- Tissues -- Optical properties. --- Tissues -- Thermal properties. --- Optical Phenomena --- Optical Devices --- Thermodynamics --- Tomography, Optical --- Radiation Equipment and Supplies --- Radiation, Nonionizing --- Equipment and Supplies --- Physical Phenomena --- Tomography --- Radiation --- Phenomena and Processes --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Diagnostic Imaging --- Electromagnetic Phenomena --- Diagnostic Techniques and Procedures --- Diagnosis --- Light --- Lasers --- Thermal Conductivity --- Tomography, Optical Coherence --- Biology --- Physics --- Physical Sciences & Mathematics --- Health & Biological Sciences --- Biophysics --- Physics - General --- Electrooptics. --- Biotechnology. --- Electro-optics --- Physics. --- Physics, general. --- Biomedicine general. --- Chemical engineering --- Genetic engineering --- Optics --- Medicine. --- Clinical sciences --- Medical profession --- Human biology --- Life sciences --- Medical sciences --- Pathology --- Physicians --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Biomedicine, general. --- Health Workforce
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