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      IMAGING SCATTERING MEDIA FROM A DISTANCE: THEORY AND APPLICATIONS OF NONCONTACT OPTICAL TOMOGRAPHY

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      Modern Physics Letters B
      World Scientific Pub Co Pte Lt

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          Time resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties.

          When a picosecond light pulse is incident on biological tissue, the temporal characteristics of the light backscattered from, or transmitted through, the sample carry information about the optical absorption and scattering coefficients of the tissue. We develop a simple model, based on the diffusion approximation to radiative transfer theory, which yields analytic expressions for the pulse shape in terms of the interaction coefficients of a homogeneous slab. The model predictions are in good agreement with the results of preliminary in vivo experiments and Monte Carlo simulations.
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            Molecular imaging in drug discovery and development.

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              Concurrent MRI and diffuse optical tomography of breast after indocyanine green enhancement.

              We present quantitative optical images of human breast in vivo. The images were obtained by using near-infrared diffuse optical tomography (DOT) after the administration of indocyanine green (ICG) for contrast enhancement. The optical examination was performed concurrently with a magnetic resonance imaging (MRI) exam on patients scheduled for excisional biopsy or surgery so that accurate image coregistration and histopathological information of the suspicious lesions was available. The ICG-enhanced optical images coregistered accurately with Gadolinium-enhanced magnetic resonance images validating the ability of DOT to image breast tissue. In contrast to simple transillumination, we found that DOT provides for localization and quantification of exogenous tissue chromophore concentrations. Additionally our use of ICG, an albumin bound absorbing dye in plasma, demonstrates the potential to differentiate disease based on the quantified enhancement of suspicious lesions.
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                Author and article information

                Journal
                Modern Physics Letters B
                Mod. Phys. Lett. B
                World Scientific Pub Co Pte Lt
                0217-9849
                1793-6640
                December 20 2004
                December 20 2004
                : 18
                : 28n29
                : 1403-1431
                Article
                10.1142/S0217984904007864
                0f367d9c-f598-4a34-80f9-3054ae36e442
                © 2004
                History

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