1Mehzer CC, Leal JP, Mayberg HS, et al. Correction of PET data for partial volume effects in human cerebral cortex by MR imaging. J Comput Assist Tomogr, 1990, 14.561-570.
2Muller-Gartner HW, Links JM, Prince JL, et al.Measurement of radiotracer concentration in brain gray matter using positron emission tomography: MRI-based correction for partial volume effects. J Cereb Blood Flow Metab, 1992, 12.571-583.
3Rousset OG, Ma Y, Leger C,C, et al. Correction for partial volume effects in PET using MRI-based 3D simulation of individual human brain metabolism. In: Uemura K, Lassen NA,Kanno I, eds. Quantification of brain function:tracer kinetics and image analysis in brain PET.New York: Elsevier Science Publishers, 1993.113-125.
4Hatazawa J, Hatano K, Ishiwam K, et al.Measurement of D2 dopamine receptor specific ^11C-YM-09151-2 binding in the canine brain by PET: importance of partial volume correction. J Nucl Med, 1991, 32:713-718.
5Geworski L, Knoop BO, de Cabrejas ML, et al.Recovery correction for quantitation in emission gomography: a feasibility study. Eur J Nucl Med, 2000,27:161-169.
7Kessler RM, Ellis JR, Eden M. Analysis of emission tomographic scan data: limitations imposed by resolution and background. J Comput Assist Tomogr, 1984, 8:514-522.
8Alder LP, Crowe JP, Al-Kaiai NK, et al. Evaluation of breast masses and axillary lymph nodes with ^18F-2-deoxy-2-fluoro-D-glucose PET. Radiology, 1993, 187:743-750.
9Femg D, Li X, Huang SC. Anew dobble modeling approach for dynamic cardiac PET studies using noise and spillover contaminated LV measurements. IEEE Trans Biomed Eng, 1996,43:319-327.
10Yu DC, Huang SC, Grafton SF, et al. Methods for improving quantitation of putamen uptake constant of FDOPA in PET studies. J Nucl Med, 1993, 34:679-688.