Fluorescence-enhanced absorption imaging using frequency-domain photon migration: tolerance to measurement error.
暂无分享,去创建一个
[1] J. S. Reynolds,et al. Multipixel Techniques for Frequency‐Domain Photon Migration Imaging , 1997, Biotechnology progress.
[2] C. L. Hutchinson,et al. Fluorescence and Absorption Contrast Mechanisms for Biomedical Optical Imaging Using Frequency‐Domain Techniques , 1997, Photochemistry and photobiology.
[3] Frank K. Tittel,et al. The influence of boundary conditions on the accuracy of diffusion theory in time-resolved reflectance spectroscopy of biological tissues , 1995, Physics in medicine and biology.
[4] D. Boas,et al. Fluorescence lifetime imaging in turbid media. , 1996, Optics letters.
[5] T L Troy,et al. Optical properties of normal and diseased breast tissues: prognosis for optical mammography. , 1996, Journal of biomedical optics.
[6] Margaret J. Eppstein,et al. 3-D Bayesian Optical Image Reconstruction with Domain Decomposition , 2001, IEEE Trans. Medical Imaging.
[7] H L Graber,et al. Improved Reconstruction Algorithm for Luminescence Optical Tomography when Background Lumiphore is Present. , 1998, Applied optics.
[8] P M Schlag,et al. Contrast features of breast cancer in frequency-domain laser scanning mammography. , 1998, Journal of biomedical optics.
[9] P M Schlag,et al. Frequency-domain techniques enhance optical mammography: initial clinical results. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[10] P M Schlag,et al. Development of a time-domain optical mammograph and first in vivo applications. , 1999, Applied optics.
[11] M J Eppstein,et al. Biomedical optical tomography using dynamic parameterization and bayesian conditioning on photon migration measurements. , 1999, Applied optics.
[12] K D Paulsen,et al. Spectroscopic diffuse optical tomography for the quantitative assessment of hemoglobin concentration and oxygen saturation in breast tissue. , 1999, Applied optics.
[13] S. Arridge. Optical tomography in medical imaging , 1999 .
[14] J. Duderstadt,et al. Nuclear reactor analysis , 1976 .
[15] R. Barbour,et al. Frequency-domain optical imaging of absorption and scattering distributions by a Born iterative method. , 1997, Journal of the Optical Society of America. A, Optics, image science, and vision.
[16] M S Patterson,et al. Error assessment of a wavelength tunable frequency domain system for noninvasive tissue spectroscopy. , 1996, Journal of biomedical optics.
[17] G. Müller,et al. Medical Optical Tomography: Functional Imaging and Monitoring , 1993 .
[18] John C. Adams,et al. MUDPACK: Multigrid portable FORTRAN software for the efficient solution of linear elliptic partial d , 1989 .
[19] P M Schlag,et al. Assessment of the size, position, and optical properties of breast tumors in vivo by noninvasive optical methods. , 1998, Applied optics.
[20] L. O. Svaasand,et al. Boundary conditions for the diffusion equation in radiative transfer. , 1994, Journal of the Optical Society of America. A, Optics, image science, and vision.
[21] Jenghwa Chang,et al. Luminescence optical tomography of dense scattering media. , 1997, Journal of the Optical Society of America. A, Optics, image science, and vision.
[22] E R Anderson,et al. Frequency-domain photon migration measurements of normal and malignant tissue optical properties in a human subject. , 1997, Applied optics.
[23] C. Pichot,et al. Inverse scattering: an iterative numerical method for electromagnetic imaging , 1991 .