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European Journal of Nuclear Medicine|March 1, 1994
A simple method for measuring glucose utilization of insulin-sensitive tissues by using the brain as a referenceH Namba, K Nakagawa, M Iyo, et al.Brain Research|December 26, 1994
In vivo measurement of acetylcholinesterase activity in the brain with a radioactive acetylcholine analogH Namba, T Irie, K Fukushi, et al.Neurological Research|February 1, 1996
Time courses of changes in cerebral blood flow and blood-brain barrier integrity by focal proton radiation in the ratH Namba, T Irie, K Fukushi, et al.Nuclear Medicine and Biology|November 1, 1993
Evaluation of phenylmethanesulfonyl fluoride (PMSF) as a tracer candidate mapping acetylcholinesterase in vivoT Irie, K Fukushi, M IyoJournal of Nuclear Medicine : Official Publication, Society of Nuclear Medicine|November 1, 1995
Simplified PET quantitation of myocardial glucose utilizationK Nakagawa, H Namba, M Iyo, et al.Journal of Nuclear Medicine : Official Publication, Society of Nuclear Medicine|April 1, 1996
Brain acetylcholinesterase activity: validation of a PET tracer in a rat model of Alzheimer's diseaseT Irie, K Fukushi, H Namba, et al.Nuclear Medicine and Biology|June 10, 1998
Glucose and methionine uptake by rat brain tumor treated with prodrug-activated gene therapyH Namba, Y Iwadate, M Iyo, et al.Lancet (London, England)|June 21, 1997
Measurement of acetylcholinesterase by positron emission tomography in the brains of healthy controls and patients with Alzheimer's diseaseM Iyo, H Namba, K Fukushi, et al.European Journal of Nuclear Medicine|February 5, 1999
Human cerebral acetylcholinesterase activity measured with positron emission tomography: procedure, normal values and effect of ageH Namba, M Iyo, K Fukushi, et al.Annals of Neurology|July 13, 1999
Positron emission tomographic measurement of acetylcholinesterase activity reveals differential loss of ascending cholinergic systems in Parkinson's disease and progressive supranuclear palsyH Shinotoh, H Namba, M Yamaguchi, et al.Pageof 161