Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
V. Ntziachristos, A. Yodh, M. Schnall, and B. Chance, “Concurent MRI and diffuse optical tomography of breast after indocyanine green enhancement,” Proc.Nat.Acad.Sci. USA 97, 2767–2772 (2000).
[Crossref]
[PubMed]
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
R. Weissleder, CH. Tung, U. Mahmood, and A. Bogdanov, “In vivo imaging with protease-activated near-infrared fluorescent probes,” Nat. Biotech. 17, 375–378 (1999).
[Crossref]
O. Abugo, Z. Gryczynski, and J. Lakowicz, “Modulation sensing of fuorophores in tissue: a new approach to drug compliance monitoring,” J.Biomed.Opt. 4, 429–442 (1999).
[Crossref]
[PubMed]
M. Erickson, J. Reynolds, and K. Webb, “Comparison of sensitivity for single-source and dual-interfering-source configurations in optical diffusion imaging,” J.Opt.Soc.Am.A 14, 3083–3092 (1997).
[Crossref]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
[Crossref]
D. Kopans, “Screening for breast-cancer and mortality reduction among women 40–49 years of age,” Cancer 74, 311–322, Suppl. S (1994).
[Crossref]
[PubMed]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
M. O’Leary, D. Boas, B. Chance, and A. Yodh, “Reradiation and imaging of diffuse photon density waves using fluorescent inhomogeneities,” J.Luminesc. 60, 281–286 (1994).
[Crossref]
A. Knuttel, J. Schmitt, and J. Knutson, “Spatial localization of absorbing bodies by interfering diffuse photon-density waves,” Appl. Opt. 32, 381–389 (1993).
[Crossref]
[PubMed]
B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
[Crossref]
[PubMed]
J. Schmitt, A. Knuttel, and J. Knutson, “Interference of diffusive light waves,” J.Opt.Soc.Am.A 9, 1832–1843 (1992)
[Crossref]
[PubMed]
M. Patterson, B. Chance, and B. Wilson, “Time-resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties,” Appl.Opt. 28, 2331–2336 (1989).
[Crossref]
[PubMed]
M. Keijzer, W. Star, and P. Storchi, “Optical diffusion in layered media,” Appl. Opt. 27, 1820–1824 (1988).
[Crossref]
[PubMed]
W. Rumsey, J. Vanderkooi, and D. Wilson, “Imaging of phosphorescence: a novel method for measuring oxygen distribution in perfused tissue,” Science 241, 1649–1651 (1988).
[Crossref]
[PubMed]
O. Abugo, Z. Gryczynski, and J. Lakowicz, “Modulation sensing of fuorophores in tissue: a new approach to drug compliance monitoring,” J.Biomed.Opt. 4, 429–442 (1999).
[Crossref]
[PubMed]
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
M. O’Leary, D. Boas, B. Chance, and A. Yodh, “Reradiation and imaging of diffuse photon density waves using fluorescent inhomogeneities,” J.Luminesc. 60, 281–286 (1994).
[Crossref]
R. Weissleder, CH. Tung, U. Mahmood, and A. Bogdanov, “In vivo imaging with protease-activated near-infrared fluorescent probes,” Nat. Biotech. 17, 375–378 (1999).
[Crossref]
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
V. Ntziachristos, A. Yodh, M. Schnall, and B. Chance, “Concurent MRI and diffuse optical tomography of breast after indocyanine green enhancement,” Proc.Nat.Acad.Sci. USA 97, 2767–2772 (2000).
[Crossref]
[PubMed]
Xingde Li, B. Chance, and A. Yodh, “Fluorescent heterogeneities in turbid media: limits for detection, characterization, and comparison with absorption,” Appl. Opt. 37, 6833–6844 (1998).
[Crossref]
B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
[Crossref]
M. O’Leary, D. Boas, B. Chance, and A. Yodh, “Reradiation and imaging of diffuse photon density waves using fluorescent inhomogeneities,” J.Luminesc. 60, 281–286 (1994).
[Crossref]
B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
[Crossref]
[PubMed]
M. Patterson, B. Chance, and B. Wilson, “Time-resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties,” Appl.Opt. 28, 2331–2336 (1989).
[Crossref]
[PubMed]
S. Nioka, S. Colak, X. Li, Y. Yan, and B. Chance, “Breast tumor images of hemodynamic information using contrast agent with back projection and FFT enhancement,” OSA TOPS 21 (Adv. In Optical Imaging and photon Migration (J. Fujimoto and M. Patterson eds.)) Optical Society of America, 266–270 (1998).
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
X. Intes, V. Ntziachristos, A. Yodh, and B. Chance, “Analytical model for phased-array diffuse optical tomography,” in preparation.
B. Chance and E. Conant, “A novel Tumor Imager using NIR light,” in preparation.
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
S. Nioka, S. Colak, X. Li, Y. Yan, and B. Chance, “Breast tumor images of hemodynamic information using contrast agent with back projection and FFT enhancement,” OSA TOPS 21 (Adv. In Optical Imaging and photon Migration (J. Fujimoto and M. Patterson eds.)) Optical Society of America, 266–270 (1998).
B. Chance and E. Conant, “A novel Tumor Imager using NIR light,” in preparation.
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
M. Erickson, J. Reynolds, and K. Webb, “Comparison of sensitivity for single-source and dual-interfering-source configurations in optical diffusion imaging,” J.Opt.Soc.Am.A 14, 3083–3092 (1997).
[Crossref]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
O. Abugo, Z. Gryczynski, and J. Lakowicz, “Modulation sensing of fuorophores in tissue: a new approach to drug compliance monitoring,” J.Biomed.Opt. 4, 429–442 (1999).
[Crossref]
[PubMed]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
[Crossref]
B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
[Crossref]
[PubMed]
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
X. Intes, V. Ntziachristos, A. Yodh, and B. Chance, “Analytical model for phased-array diffuse optical tomography,” in preparation.
B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
[Crossref]
B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
[Crossref]
[PubMed]
A. Knuttel, J. Schmitt, and J. Knutson, “Spatial localization of absorbing bodies by interfering diffuse photon-density waves,” Appl. Opt. 32, 381–389 (1993).
[Crossref]
[PubMed]
J. Schmitt, A. Knuttel, and J. Knutson, “Interference of diffusive light waves,” J.Opt.Soc.Am.A 9, 1832–1843 (1992)
[Crossref]
[PubMed]
A. Knuttel, J. Schmitt, and J. Knutson, “Spatial localization of absorbing bodies by interfering diffuse photon-density waves,” Appl. Opt. 32, 381–389 (1993).
[Crossref]
[PubMed]
J. Schmitt, A. Knuttel, and J. Knutson, “Interference of diffusive light waves,” J.Opt.Soc.Am.A 9, 1832–1843 (1992)
[Crossref]
[PubMed]
D. Kopans, “Screening for breast-cancer and mortality reduction among women 40–49 years of age,” Cancer 74, 311–322, Suppl. S (1994).
[Crossref]
[PubMed]
O. Abugo, Z. Gryczynski, and J. Lakowicz, “Modulation sensing of fuorophores in tissue: a new approach to drug compliance monitoring,” J.Biomed.Opt. 4, 429–442 (1999).
[Crossref]
[PubMed]
H. Szmacinski and J. Lakowicz, “Lifetime based sensing,” in Probe Design and Chemical Sensing, J. Lakowicz ed., Vol. 4 of Topics in Fluorescence Spectroscopy (Plenum, New York, 1994), 295–334.
S. Nioka, S. Colak, X. Li, Y. Yan, and B. Chance, “Breast tumor images of hemodynamic information using contrast agent with back projection and FFT enhancement,” OSA TOPS 21 (Adv. In Optical Imaging and photon Migration (J. Fujimoto and M. Patterson eds.)) Optical Society of America, 266–270 (1998).
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
[Crossref]
R. Weissleder, CH. Tung, U. Mahmood, and A. Bogdanov, “In vivo imaging with protease-activated near-infrared fluorescent probes,” Nat. Biotech. 17, 375–378 (1999).
[Crossref]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
S. Nioka, S. Colak, X. Li, Y. Yan, and B. Chance, “Breast tumor images of hemodynamic information using contrast agent with back projection and FFT enhancement,” OSA TOPS 21 (Adv. In Optical Imaging and photon Migration (J. Fujimoto and M. Patterson eds.)) Optical Society of America, 266–270 (1998).
V. Ntziachristos, A. Yodh, M. Schnall, and B. Chance, “Concurent MRI and diffuse optical tomography of breast after indocyanine green enhancement,” Proc.Nat.Acad.Sci. USA 97, 2767–2772 (2000).
[Crossref]
[PubMed]
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
X. Intes, V. Ntziachristos, A. Yodh, and B. Chance, “Analytical model for phased-array diffuse optical tomography,” in preparation.
M. O’Leary, D. Boas, B. Chance, and A. Yodh, “Reradiation and imaging of diffuse photon density waves using fluorescent inhomogeneities,” J.Luminesc. 60, 281–286 (1994).
[Crossref]
M. O’Leary, “Imaging with diffuse photon density waves”, PhD University of Pennsylvania (1996).
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
M. Patterson, B. Chance, and B. Wilson, “Time-resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties,” Appl.Opt. 28, 2331–2336 (1989).
[Crossref]
[PubMed]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
M. Erickson, J. Reynolds, and K. Webb, “Comparison of sensitivity for single-source and dual-interfering-source configurations in optical diffusion imaging,” J.Opt.Soc.Am.A 14, 3083–3092 (1997).
[Crossref]
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
W. Rumsey, J. Vanderkooi, and D. Wilson, “Imaging of phosphorescence: a novel method for measuring oxygen distribution in perfused tissue,” Science 241, 1649–1651 (1988).
[Crossref]
[PubMed]
A. Knuttel, J. Schmitt, and J. Knutson, “Spatial localization of absorbing bodies by interfering diffuse photon-density waves,” Appl. Opt. 32, 381–389 (1993).
[Crossref]
[PubMed]
J. Schmitt, A. Knuttel, and J. Knutson, “Interference of diffusive light waves,” J.Opt.Soc.Am.A 9, 1832–1843 (1992)
[Crossref]
[PubMed]
V. Ntziachristos, A. Yodh, M. Schnall, and B. Chance, “Concurent MRI and diffuse optical tomography of breast after indocyanine green enhancement,” Proc.Nat.Acad.Sci. USA 97, 2767–2772 (2000).
[Crossref]
[PubMed]
K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
[Crossref]
[PubMed]
B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
[Crossref]
[PubMed]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
H. Szmacinski and J. Lakowicz, “Lifetime based sensing,” in Probe Design and Chemical Sensing, J. Lakowicz ed., Vol. 4 of Topics in Fluorescence Spectroscopy (Plenum, New York, 1994), 295–334.
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
R. Weissleder, CH. Tung, U. Mahmood, and A. Bogdanov, “In vivo imaging with protease-activated near-infrared fluorescent probes,” Nat. Biotech. 17, 375–378 (1999).
[Crossref]
W. Rumsey, J. Vanderkooi, and D. Wilson, “Imaging of phosphorescence: a novel method for measuring oxygen distribution in perfused tissue,” Science 241, 1649–1651 (1988).
[Crossref]
[PubMed]
M. Erickson, J. Reynolds, and K. Webb, “Comparison of sensitivity for single-source and dual-interfering-source configurations in optical diffusion imaging,” J.Opt.Soc.Am.A 14, 3083–3092 (1997).
[Crossref]
R. Weissleder, CH. Tung, U. Mahmood, and A. Bogdanov, “In vivo imaging with protease-activated near-infrared fluorescent probes,” Nat. Biotech. 17, 375–378 (1999).
[Crossref]
B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
[Crossref]
[PubMed]
M. Patterson, B. Chance, and B. Wilson, “Time-resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties,” Appl.Opt. 28, 2331–2336 (1989).
[Crossref]
[PubMed]
W. Rumsey, J. Vanderkooi, and D. Wilson, “Imaging of phosphorescence: a novel method for measuring oxygen distribution in perfused tissue,” Science 241, 1649–1651 (1988).
[Crossref]
[PubMed]
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
S. Nioka, S. Colak, X. Li, Y. Yan, and B. Chance, “Breast tumor images of hemodynamic information using contrast agent with back projection and FFT enhancement,” OSA TOPS 21 (Adv. In Optical Imaging and photon Migration (J. Fujimoto and M. Patterson eds.)) Optical Society of America, 266–270 (1998).
V. Ntziachristos, A. Yodh, M. Schnall, and B. Chance, “Concurent MRI and diffuse optical tomography of breast after indocyanine green enhancement,” Proc.Nat.Acad.Sci. USA 97, 2767–2772 (2000).
[Crossref]
[PubMed]
Xingde Li, B. Chance, and A. Yodh, “Fluorescent heterogeneities in turbid media: limits for detection, characterization, and comparison with absorption,” Appl. Opt. 37, 6833–6844 (1998).
[Crossref]
M. O’Leary, D. Boas, B. Chance, and A. Yodh, “Reradiation and imaging of diffuse photon density waves using fluorescent inhomogeneities,” J.Luminesc. 60, 281–286 (1994).
[Crossref]
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
X. Intes, V. Ntziachristos, A. Yodh, and B. Chance, “Analytical model for phased-array diffuse optical tomography,” in preparation.
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
[Crossref]
T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
M. Keijzer, W. Star, and P. Storchi, “Optical diffusion in layered media,” Appl. Opt. 27, 1820–1824 (1988).
[Crossref]
[PubMed]
A. Knuttel, J. Schmitt, and J. Knutson, “Spatial localization of absorbing bodies by interfering diffuse photon-density waves,” Appl. Opt. 32, 381–389 (1993).
[Crossref]
[PubMed]
Xingde Li, B. Chance, and A. Yodh, “Fluorescent heterogeneities in turbid media: limits for detection, characterization, and comparison with absorption,” Appl. Opt. 37, 6833–6844 (1998).
[Crossref]
M. Patterson, B. Chance, and B. Wilson, “Time-resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties,” Appl.Opt. 28, 2331–2336 (1989).
[Crossref]
[PubMed]
C. Lindquist, A. Pifferi, R. Berg, S. Anderson-Engels, and S. Svandberg, “Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements,” Appl.Phys.Lett. 69, 1674–1676 (1996).
[Crossref]
D. Kopans, “Screening for breast-cancer and mortality reduction among women 40–49 years of age,” Cancer 74, 311–322, Suppl. S (1994).
[Crossref]
[PubMed]
Y. Chen, S. Zhou, C. Xie, S. Nioka, M. Delivoria-Papadopoulos, E. Anday, and B. Chance, “Preliminary evaluation of dual-wavelength phased array imaging on neonatal brain function,” J.Biomed.Opt. 5, 206–213 (2000).
[Crossref]
O. Abugo, Z. Gryczynski, and J. Lakowicz, “Modulation sensing of fuorophores in tissue: a new approach to drug compliance monitoring,” J.Biomed.Opt. 4, 429–442 (1999).
[Crossref]
[PubMed]
M. O’Leary, D. Boas, B. Chance, and A. Yodh, “Reradiation and imaging of diffuse photon density waves using fluorescent inhomogeneities,” J.Luminesc. 60, 281–286 (1994).
[Crossref]
R. Haskell, L. Svaasand, TT. Tsay, Tc. Feng, M. McAdams, and B. Tromberg, “Boundary conditions for the diffusion equation in radiative transfer,” J.Opt.Soc.Am.A 11, 2727–2741 (1994).
[Crossref]
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K. Licha, B. Riefke, V. Ntziachristos, A. Becker, B. Chance, and W. Semmler, “Hydrophylic cyanine dyes as contrast agents for near-infrared tumor imaging: synthesis, photophysical properties and spectroscopic in-vivo characterization,” Photochem. Photobiol. 72, 392–398 (2000).
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B. Chance, K. Kang, L. He, J. Weng, and E. Sevick, “Highly sensitive object location in tissue models with linear in-phase and anti-phase multi-element optical arrays in one and two dimensions,” Proc. Nat. Acad. Sci. USA 90, 3423–3427 (1993).
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V. Ntziachristos, A. Yodh, M. Schnall, and B. Chance, “Concurent MRI and diffuse optical tomography of breast after indocyanine green enhancement,” Proc.Nat.Acad.Sci. USA 97, 2767–2772 (2000).
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B. Chance, K. Kang, L. He, H. Liu, and S. Zhou, “Precision localization of hidden absorbers in body tissues with phased-array optical systems,” Rev.Sci,Instrum. 67, 4324–4331 (1996).
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T. Durduran, M. Holboke, J. Culver, L. Zubkov, R. Choe, D. Pattanayak, B. Chance, and A. Yodh, “Tissue bulk optical properties of breast and phantoms obtained with clinical optical imager,” in Biomedical Topical Meetings, OSA Technical Digest (Optical Society of America, Washington DC, 2000), 386–388.
X. Intes, V. Ntziachristos, A. Yodh, and B. Chance, “Analytical model for phased-array diffuse optical tomography,” in preparation.
M. O’Leary, “Imaging with diffuse photon density waves”, PhD University of Pennsylvania (1996).
S. Nioka, S. Colak, X. Li, Y. Yan, and B. Chance, “Breast tumor images of hemodynamic information using contrast agent with back projection and FFT enhancement,” OSA TOPS 21 (Adv. In Optical Imaging and photon Migration (J. Fujimoto and M. Patterson eds.)) Optical Society of America, 266–270 (1998).
B. Chance and E. Conant, “A novel Tumor Imager using NIR light,” in preparation.