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Standardization of (18)F using the 4pi(beta+gamma) integral counting technique.
Authors:T. Yamada   Y. Kawada   Y. Sato   A. Yunoki  Y. Hino
Affiliation:

aJapan Radioisotope Association, 2-28-45, Hon-komagome, Bunkyo, Tokyo 113-8941, Japan

bNational Metrology Institute of Japan, National Institute of Advanced Industrial Science and Technology, Tsukuba Central 2, 1-1-1 Umezono, Ttsukuba, Ibaraki 305-8568, Japan

Abstract:Α 4π(β+γ) integral counting technique using a 4πβ−4πγ detector configuration was adopted for the standardization of 18F. In this technique, the β-detector is composed of two thin plastic scintillators sandwiching the source, coupled with a slender photomultiplier tube. The β-detector part with the source was inserted into a large well-type NaI(Tl) scintillation detector for γ-ray detection, making a 4πβ−4πγ coincidence counting system. In this work, positron particles were detected with high efficiency in the β-channel and annihilation quanta were also detected with high efficiency in the 4πγ channel. The very small inefficiency of the 4π(β+γ) integral counter for the β-plus branch has been confirmed by EGS5 Monte Carlo simulation. The result using this technique agreed within the uncertainties with the result obtained by the conventional 4πβγ coincidence counting with the efficiency extrapolation technique using the same detector configuration and a conventional 4πβγ coincidence counter.
Keywords:18F   4π(β+γ)   4π(βγ)   Coincidence counting   Integral counting   Radioactivity   Well-type detector   Sandwich-type plastic scintillator
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