BergströmMEricsonK: Methionine accumulation in glioma and normal brain tissue studied with positron emission tomography - competition with branched amino acids. J Comput Assist Tomogr11: 208–213, 1987.
2.
BergströmMLundqvistH: Comparison of the accumulation kinetics of L-(11C-methyl)-methionine and D-(11C-methyl)-methionine in brain tumors studied with positron emission tomography. Acta Radiol28: 225–229, 1987.
3.
BohmCGreitzT: Applications of a computerized adjustable brain atlas in positron emission tomography. Acta Radiol (Suppl) 369: 449–452, 1986.
DahlbomMCherryS: Optimization of PET instrumentation for brain activation studies. IEEE Trans Nucl Sci40(4): 1048–1054, 1993.
6.
Di ChiroG: Positron emission tomography using [18F]fluorodeoxyglucose in brain tumors. A powerful diagnostic and prognostic tool. Invest Radiol22: 360–371, 1987.
7.
Di ChiroGHatazawaJ: Glucose utilization by intracranial meningiomas as an index of tumor aggressivity and probability of recurrence: A PET study. Radiology164: 521–526, 1987.
8.
Di ChiroGOldfieldE: Cerebral necrosis after radiotherapy and/or intraarterial chemotherapy for brain tumors: PET and neuropathologic studies. Am J Radiol150: 189–197, 1988.
9.
EricsonKLiljaA: Positron emission tomography with 11C-methionine, 11C-glucose and 68Ga-EDTA in the examination of supratentorial tumors. J Comput Assist Tomogr9: 683–689, 1985.
10.
FoxPMintunM: Enhanced detection of focal brain response using intersubject averaging and change-distribution analysis of subtracted PET images. J Cereb Blood Flow Metab8: 642–653, 1988.
11.
GreitzTBohmC: A computerized brain atlas: Construction, anatomical content, and some applications. J Comput Assist Tomogr15: 26–38, 1991.
12.
HuangS-CPhelpsM: Noninvasive determination of local cerebral metabolic rate of glucose in man. Am J Physiol238: E69–82, 1980.
13.
IngvarMErikssonL: Methodological aspects of brain activation studies: Cerebral blood flow determined with [15O]butanol and positron emission tomography. J Cereb Blood Flow Metab14: 628–638, 1994.
14.
KihlströmLKarlssonB: Gamma Knife surgery for cerebral metastases. Implications for survival based on 16 years experience. Stereotact Funct Neurosurg61 (Suppl1): 45–50, 1993.
15.
MogardJKihlströmL: Recurrent tumor vs. radiation effects after Gamma Knife radiosurgery of intracerebral metastases: Diagnosis with PET-FDG. J Comput Assist Tomogr18: 177–181, 1994.
16.
MosskinMvon HolstH: Positron emission tomography with 11C-methionine and computed tomography of intracranial tumours compared with histopathological examination of multiple biopsies. Acta Radiol28: 673–681, 1987.
17.
PhelpsMHuangS-C: Tomographic measurement of local cerebral glucose metabolic rate in human with [18F]-s-fluoro-deoxy-D-glucose: Validation of method. Ann Neurol6: 371–388, 1979.
18.
RaichleMGrubbR: Correlation between regional cerebral blood flow and oxidative metabolism. Arch Neurol33: 523–526, 1976.
19.
ReivichMKuhlD: The [18F]fluorodeoxyglucose method for the measurement of local cerebral glucose utilization in man. Circ Res44: 127–137, 1979.
20.
SavicI, (1992) Benzodiazepine receptors in partial and generalized epilepsy. Karolinska Institute, Doctoral Thesis.
21.
WienhardKErikssonL: Performance evaluation of the positron scanner ECAT EXACT. J Comput Assist Tomogr16: 804–813, 1992.