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Titlebook: Optical-Thermal Response of Laser-Irradiated Tissue; Ashley J. Welch,Martin J.C. Gemert Book 2011Latest edition Springer Science+Business

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978-94-024-0449-4Springer Science+Business Media B.V. 2011
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Basic Interactions of Light with TissueAt its simplest, there are but two fates for light that is incident upon a material: either the light is absorbed within the material or it is not.
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Measurement of Ex Vivo and In Vivo Tissue Optical Properties: Methods and TheoriesIn this chapter, the various experimental techniques that have been developed to measure the optical scattering and absorption properties of tissues are discussed, together with the theory underlying these methods.
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Laser Generated Heat Transferncrease in the temperature will cause a diffusion of heat to surrounding areas that are cooler. Therefore, the analysis of heat transfer is an important and relevant component of understanding the process and consequences of laser irradiation of tissue. Phase change and temperature elevation are often a direct source of injury to tissue.
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Polarized Light: Electrodynamic Fundamentalsthus we shall be mainly concerned with the electric field .. Because of the rapidity of light oscillations, and because the charges are bound in atoms and molecules, there is no net motion of the charges. The only effect of the imposed electric field is the deformation of the charge system.
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Dynamic Changes in Optical Propertiest three reasons: (1) implementing tissue handling protocols that assure repeatable optical property measurements, (2) developing mathematical models that accurately predict therapeutic outcomes, and (3) manipulating tissue optical properties to enhance diagnostic information or therapeutic efficacy.
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