An investigation of the physical characteristics of 66Ga as an isotope for PET imaging and quantification.
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S. Larson | O. Mawlawi | R. Finn | K. Pentlow | M. Graham | F. Daghighian
[1] T Jones,et al. Assessment of response function in two PET scanners with and without interplane septa. , 1991, IEEE transactions on medical imaging.
[2] V. Dhawan,et al. A new approach to the measurement of resolution and sampling on a positron emission tomograph , 1990 .
[3] Bradley T. Christian,et al. Quantitative PET with positron emitters that emit prompt gamma rays , 1995, IEEE Trans. Medical Imaging.
[4] K S Pentlow,et al. Quantitative imaging of I-124 using positron emission tomography with applications to radioimmunodiagnosis and radioimmunotherapy. , 1991, Medical physics.
[5] K. Kearfott,et al. Evaluation of the performance characteristics of the PC 4600 positron emission tomograph. , 1984, Journal of computer assisted tomography.
[6] C. Pelizzari,et al. Accurate Three‐Dimensional Registration of CT, PET, and/or MR Images of the Brain , 1989, Journal of computer assisted tomography.
[7] E. Hoffman,et al. Quantitation in Positron Emission Computed Tomography: 4. Effect of Accidental Coincidences , 1981, Journal of computer assisted tomography.
[8] R. Kessler,et al. Analysis of emission tomographic scan data: limitations imposed by resolution and background. , 1984, Journal of computer assisted tomography.
[9] E. Hoffman,et al. Evaluating the Performance of Multiplane Positron Tomographs Designed for Brain Imaging , 1982, IEEE Transactions on Nuclear Science.
[10] W. W. Moses,et al. A positron tomograph with 600 BGO crystals and 2.6 mm resolution , 1988 .
[11] Michael E. Phelps,et al. Quantitation in Positron Emission Computed Tomography , 1980 .
[12] C Bohm,et al. Corrections for Attenuation, Scattered Radiation, and Random Coincidences in a Ring Detector Positron Emission Transaxial Tomograph , 1980, IEEE Transactions on Nuclear Science.