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Physics in Medicine and Biology|September 1, 1995
Statistical basis for the determination of optical pathlength in tissueS R Arridge, M Hiraoka, M SchweigerMedical Physics|March 1, 1993
A finite element approach for modeling photon transport in tissueS R Arridge, M Schweiger, M Hiraoka, et al.Medical Physics|November 1, 1995
The finite element method for the propagation of light in scattering media: boundary and source conditionsM Schweiger, S R Arridge, M Hiraoka, et al.Applied Optics|November 6, 2010
Direct calculation of the moments of the distribution of photon time of flight in tissue with a finite-element methodS R Arridge, M SchweigerPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|June 29, 1997
Image reconstruction in optical tomographyS R Arridge, M SchweigerApplied Optics|November 12, 2010
Photon-measurement density functions. Part 2: Finite-element-method calculationsS R Arridge, M SchweigerPhysics in Medicine and Biology|August 12, 1999
Application of temporal filters to time resolved data in optical tomographyM Schweiger, S R ArridgeMedical Physics|June 1, 1997
The finite-element method for the propagation of light in scattering media: frequency domain caseM Schweiger, S R ArridgeApplied Optics|February 28, 2008
Comparison of two- and three-dimensional reconstruction methods in optical tomographyM Schweiger, S R ArridgeApplied Optics|February 12, 2008
Direct calculation with a finite-element method of the Laplace transform of the distribution of photon time of flight in tissueM Schweiger, S R ArridgePageof 72