12. Metabolite Analysis for Development and Quantification of Molecular Imaging Probes
Author:
Affiliation:
1. National Institute of Radiological Sciences National Institutes for Quantum and Radiological Science and Technology
Publisher
Japanese Society of Radiological Technology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjrt/75/1/75_2019_JSRT_75.1.71/_pdf
Reference24 articles.
1. 1) Phelps ME, Huang SC, Hoffman EJ, et al. Tomographic measurement of local cerebral glucose metabolic rate in humans with (F-18)2-fluoro-2-deoxy-D-glucose: validation of method. Ann Neurol 1979; 6(5): 371–388.
2. 2) Suolinna EM, Haaparanta M, Paul R, et al. Metabolism of 2-[18F] fluoro-2-deoxyglucose in tumor-bearing rats: chromatographic and enzymatic studies. Int J Rad Appl Instrum B 1986; 13(5): 577–581.
3. 3) Gallagher BM, Fowler JS, Gutterson NI, et al. Metabolic trapping as a principle of radiopharmaceutical design: some factors resposible for the biodistribution of [18F] 2-deoxy-2-fluoro-D-glucose. J Nucl Med 1978; 19(10): 1154–1161.
4. 4) Kikuchi T, Okamura T, Zhang MR, et al. PET probes for imaging brain acetylcholinesterase. J Labelled Comp Radiopharm 2013; 56(3–4): 172–179.
5. 5) Irie T, Fukushi K, Akimoto Y, et al. Design and evaluation of radioactive acetylcholine analogs for mapping brain acetylcho-linesterase (AchE) in vivo. Nucl Med Biol 1994; 21(6): 801–808.
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