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Physics in Medicine and Biology|September 1, 2007
Bioluminescence imaging of point sources implanted in small animals post mortem: evaluation of a method for estimating source strength and depthD C Comsa, T J Farrell, M S PattersonPhysics in Medicine and Biology|July 25, 2006
Quantification of bioluminescence images of point source objects using diffusion theory modelsD C Comsa, T J Farrell, M S PattersonJournal of Biomedical Optics|December 1, 2001
Experimental verification of the effect of refractive index mismatch on the light fluence in a turbid mediumT J Farrell, M S PattersonMedical Physics|July 1, 1992
A diffusion theory model of spatially resolved, steady-state diffuse reflectance for the noninvasive determination of tissue optical properties in vivoT J Farrell, M S Patterson, B WilsonApplied Optics|March 18, 2008
Monte carlo diffusion hybrid model for photon migration in a two-layer turbid medium in the frequency domainG Alexandrakis, T J Farrell, M S PattersonApplied Optics|February 15, 2008
Influence of layered tissue architecture on estimates of tissue optical properties obtained from spatially resolved diffuse reflectometryT J Farrell, M S Patterson, M EssenpreisApplied Optics|February 28, 2008
Accuracy of the diffusion approximation in determining the optical properties of a two-layer turbid mediumG Alexandrakis, T J Farrell, M S PattersonPhotochemistry and Photobiology|September 25, 1998
Comparison of the in vivo photodynamic threshold dose for photofrin, mono- and tetrasulfonated aluminum phthalocyanine using a rat liver modelT J Farrell, B C Wilson, M S Patterson, et al.Physics in Medicine and Biology|March 7, 2001
A diffusion theory model of spatially resolved fluorescence from depth-dependent fluorophore concentrationsD E Hyde, T J Farrell, M S Patterson, et al.Applied Optics|February 28, 2008
Modeling of photosensitizer fluorescence emission and photobleaching for photodynamic therapy dosimetryT J Farrell, R P Hawkes, M S Patterson, et al.Pageof 8