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1
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79953082661
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Models of light propagation in human tissue applied to cancer diagnostics
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R. H. Wilson, and M.-A. Mycek, "Models of light propagation in human tissue applied to cancer diagnostics," Technology in Cancer Research and Treatment 10, 121-134 (2011).
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(2011)
Technology in Cancer Research and Treatment
, vol.10
, pp. 121-134
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Wilson, R.H.1
Mycek, M.-A.2
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2
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33746409759
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Model-based analysis of clinical fluorescence spectroscopy for in vivo detection of cervical intraepithelial dysplasia
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S. K. Chang, N. Marin, M. Follen, and R. Richards-Kortum, "Model-based analysis of clinical fluorescence spectroscopy for in vivo detection of cervical intraepithelial dysplasia," J. Biomed. Opt. 11, 024008 (2006).
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(2006)
J. Biomed. Opt.
, vol.11
, pp. 024008
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Chang, S.K.1
Marin, N.2
Follen, M.3
Richards-Kortum, R.4
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3
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78049515843
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Photon-tissue interaction model enables quantitative optical analysis of human pancreatic tissues
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R. H. Wilson, M. Chandra, L.-C. Chen, W. Lloyd, J. Scheiman, D. Simeone, J. Purdy, B. McKenna, and M.-A. Mycek, "Photon-tissue interaction model enables quantitative optical analysis of human pancreatic tissues," Opt. Express 18, 21612-21621 (2010).
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(2010)
Opt. Express
, vol.18
, pp. 21612-21621
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Wilson, R.H.1
Chandra, M.2
Chen, L.-C.3
Lloyd, W.4
Scheiman, J.5
Simeone, D.6
Purdy, J.7
McKenna, B.8
Mycek, M.-A.9
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4
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79960518093
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Fluorescence wavelength-time matrix acquisition for biomedical tissue diagnostics
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to appear
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W. R. Lloyd, R. H. Wilson, L.-C. Chen, G. D. Gillispie, and M.-A. Mycek, "Fluorescence wavelength-time matrix acquisition for biomedical tissue diagnostics," Proc. SPIE, to appear (2011).
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(2011)
Proc. SPIE
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Lloyd, W.R.1
Wilson, R.H.2
Chen, L.-C.3
Gillispie, G.D.4
Mycek, M.-A.5
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5
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0037152060
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Quantitative fluorescence lifetime spectroscopy in turbid media: Comparison of theoretical, experimental and computational methods
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DOI 10.1088/0031-9155/47/18/308, PII S0031915502360056
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K. Vishwanath, B. W. Pogue, and M.-A. Mycek, "Quantitative fluorescence lifetime spectroscopy in turbid media: comparison of theoretical, experimental and computational methods," Phys. Med. Biol. 47, 3387-3405 (2002). (Pubitemid 35174229)
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(2002)
Physics in Medicine and Biology
, vol.47
, Issue.18
, pp. 3387-3405
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Vishwanath, K.1
Pogue, B.2
Mycek, M.-A.3
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6
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25144508286
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Time-resolved photon migration in bi-layered tissue models
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DOI 10.1364/OPEX.13.007466
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K. Vishwanath, and M.-A. Mycek, "Time-resolved photon migration in bi-layered tissue models," Opt. Express 13, 7466-7482 (2005). (Pubitemid 41338471)
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(2005)
Optics Express
, vol.13
, Issue.19
, pp. 7466-7482
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Vishwanath, K.1
Mycek, M.-A.2
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7
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0000945932
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Three dimensional Monte Carlo code for photon migration through complex heterogeneous media including the adult human head
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D. A. Boas, J. P. Culver, J. J. Stott, and A. K. Dunn, "Three dimensional Monte Carlo code for photon migration through complex heterogeneous media including the adult human head," Opt. Express 10, 159-170 (2002).
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(2002)
Opt. Express
, vol.10
, pp. 159-170
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Boas, D.A.1
Culver, J.P.2
Stott, J.J.3
Dunn, A.K.4
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8
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35348947559
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Shape based Monte Carlo code for light transport in complex heterogeneous tissues
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DOI 10.1364/OE.15.014086
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E. Margallo-Balbás, and P. J. French, "Shape based Monte Carlo code for light transport in complex heterogeneous tissues," Opt. Express 15, 14086-14098 (2007). (Pubitemid 47608618)
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(2007)
Optics Express
, vol.15
, Issue.21
, pp. 14086-14098
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Margallo-Balbas, E.1
French, P.J.2
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9
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79953801991
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MCVM: Monte Carlo modeling of photon migration in voxelized media
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T. Li, Q. Luo, and H. Gong, "MCVM: Monte Carlo modeling of photon migration in voxelized media," J. Innovat. Opt. Health Sci. 3, 91-102 (2010).
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(2010)
J. Innovat. Opt. Health Sci.
, vol.3
, pp. 91-102
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Li, T.1
Luo, Q.2
Gong, H.3
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10
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79953789931
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Monte Carlo modeling of in vivo protoporphyrin IX fluorescence and singlet oxygen production during photodynamic therapy for patients presenting with superficial basal cell carcinomas
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R. M. Valentine, C. T. A. Brown, K. Wood, H. Moseley, and S. Ibbotson, "Monte Carlo modeling of in vivo protoporphyrin IX fluorescence and singlet oxygen production during photodynamic therapy for patients presenting with superficial basal cell carcinomas," J. Biomed. Opt. 16, 048002 (2011).
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(2011)
J. Biomed. Opt.
, vol.16
, pp. 048002
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Valentine, R.M.1
Brown, C.T.A.2
Wood, K.3
Moseley, H.4
Ibbotson, S.5
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11
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0037650175
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Intraoral grafting of an ex vivo produced oral mucosa equivalent: A preliminary report
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DOI 10.1054/ijom.2002.0365
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K. Izumi, S. E. Feinberg, A. Iida, and M. Yoshizawa, "Intraoral grafting of an ex vivo produced oral mucosa equivalent: a preliminary report," Int. J. Oral Maxillofac. Surg. 32, 188-197 (2003). (Pubitemid 36592572)
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(2003)
International Journal of Oral and Maxillofacial Surgery
, vol.32
, Issue.2
, pp. 188-197
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Izumi, K.1
Feinberg, S.E.2
Iida, A.3
Yoshizawa, M.4
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12
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1042277961
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Development of a Tissue-Engineered Human Oral Mucosa: From the Bench to the Bed Side
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DOI 10.1159/000075034
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K. Izumi, J. Song, and S. E. Feinberg, "Development of a tissue-engineered human oral mucosa: from the bench to the bed side," Cells Tissues Organs 176, 134-152 (2004). (Pubitemid 38199426)
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(2004)
Cells Tissues Organs
, vol.176
, Issue.1-3
, pp. 134-152
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Izumi, K.1
Song, J.2
Feinberg, S.E.3
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13
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79960880683
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Nonlinear optical molecular imaging enables metabolic redox sensing in tissue-engineered constructs
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to appear
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L.-C. Chen, W. R. Lloyd, R. H. Wilson, S. Kuo, C. L. Marcelo, S. E. Feinberg, and M.-A. Mycek, "Nonlinear optical molecular imaging enables metabolic redox sensing in tissue-engineered constructs," Proc. SPIE, to appear (2011).
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(2011)
Proc. SPIE
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Chen, L.-C.1
Lloyd, W.R.2
Wilson, R.H.3
Kuo, S.4
Marcelo, C.L.5
Feinberg, S.E.6
Mycek, M.-A.7
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14
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79960540256
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User-friendly Monte Carlo code for time-resolved fluorescence models of tissues with irregular interfaces
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(Optical Society of America), BME8
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R. H. Wilson, V. Schweller, and M.-A. Mycek, "User-friendly Monte Carlo code for time-resolved fluorescence models of tissues with irregular interfaces," Biomedical Optics 2010 Technical Digest (Optical Society of America), BME8 (2010).
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(2010)
Biomedical Optics 2010 Technical Digest
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Wilson, R.H.1
Schweller, V.2
Mycek, M.-A.3
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15
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77953836119
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Monte Carlo model of spatially offset Raman spectroscopy for breast tumor margin analysis
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M. D. Keller, R. H. Wilson, M.-A. Mycek, and A. Mahadevan-Jansen, "Monte Carlo model of spatially offset Raman spectroscopy for breast tumor margin analysis," Appl. Spectrosc. 64, 607-614 (2010).
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(2010)
Appl. Spectrosc.
, vol.64
, pp. 607-614
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Keller, M.D.1
Wilson, R.H.2
Mycek, M.-A.3
Mahadevan-Jansen, A.4
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16
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79960175222
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Development of spatially offset Raman spectroscopy probe for breast tumor surgical margin evaluation
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submitted to
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M. D. Keller, E. Vargis, N. de Natos Granja, R. H. Wilson, M.-A. Mycek, M. C. Kelley, and A. Mahadevan-Jansen, "Development of spatially offset Raman spectroscopy probe for breast tumor surgical margin evaluation" (submitted to J. Biomed. Opt.).
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J. Biomed. Opt
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Keller, M.D.1
Vargis, E.2
De Natos Granja, N.3
Wilson, R.H.4
Mycek, M.-A.5
Kelley, M.C.6
Mahadevan-Jansen, A.7
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