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Applied Optics|January 1, 1997
Time-resolved imaging of solid phantoms for optical mammographyD Grosenick, H Wabnitz, H RinnebergApplied Optics|March 6, 2008
Development of a time-domain optical mammograph and first in vivo applicationsD Grosenick, H Wabnitz, H H Rinneberg, et al.Applied Optics|January 1, 1997
Imaging in turbid media by photon density waves: spatial resolution and scaling relationsH Wabnitz, H RinnebergPhysics in Medicine and Biology|September 1, 1996
Preparation of solid phantoms with defined scattering and absorption properties for optical tomographyU Sukowski, F Schubert, D Grosenick, et al.Optics Express|June 6, 2009
In-vivo tissue optical properties derived by linear perturbation theory for edge-corrected time-domain mammogramsBernhard Wassermann, A Kummrow, K Moesta, et al.Journal of Biomedical Optics|May 29, 2001
Near-infrared fluorescent dyes for enhanced contrast in optical mammography: phantom experimentsB Ebert, U Sukowski, D Grosenick, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|February 1, 2008
Evaluation of higher-order time-domain perturbation theory of photon diffusion on breast-equivalent phantoms and optical mammogramsD Grosenick, A Kummrow, R Macdonald, et al.Physics in Medicine and Biology|March 30, 2001
Determining changes in NIR absorption using a layered model of the human headJ Steinbrink, H Wabnitz, H Obrig, et al.Neuroimage|January 4, 2005
Bed-side assessment of cerebral perfusion in stroke patients based on optical monitoring of a dye bolus by time-resolved diffuse reflectanceA Liebert, H Wabnitz, J Steinbrink, et al.Neuroscience Letters|September 9, 2000
Somatosensory evoked fast optical intensity changes detected non-invasively in the adult human headJ Steinbrink, M Kohl, H Obrig, et al.Pageof 10