Quantitative assessment of regional myocardial blood flow using oxygen-15-labelled water and positron emission tomography : a multicentre evaluation in Japan

Recently, a method has been proposed for the quantitative measurement of regional myocardial blood flow (MBF) using oxygen-15-labelled water and positron emission tomography (PET). A multicentre project was organized with the intention of evaluating the accuracy of this method, particularly as a mul...

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Veröffentlicht in:European journal of nuclear medicine 2000-02, Vol.27 (2), p.192-201
Hauptverfasser: LIDA, H, YOKOYAMA, I, TADAMURA, E, YOSHIDA, T, TAMAKI, N, AGOSTINI, D, BANNO, T, KATO, T, ITO, K, KUWABARA, Y, ODA, Y, OTAKE, T, TAMURA, Y
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Sprache:eng
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Zusammenfassung:Recently, a method has been proposed for the quantitative measurement of regional myocardial blood flow (MBF) using oxygen-15-labelled water and positron emission tomography (PET). A multicentre project was organized with the intention of evaluating the accuracy of this method, particularly as a multicentre clinical investigative tool. Each of seven institutions performed PET studies on more than five normal volunteers following a specified protocol. The PET study included a transmission scan, a 15O-carbon monoxide static scan and a 15O-water dynamic scan, thereby yielding MBF values which should have been independent of the spatial resolution of the PET scanner employed. Fifty-three subjects (aged 20-63 years, mean+/-SD 36+/-12 years) were studied at rest, and 31 of these subjects were also studied after dipyridamole in five institutions. Inter-institution consistency and intra-subject variation in MBF values were then evaluated. MBF averaged for all subjects was 0.93+/-0.34 ml min(-1) g(-1) at rest and 3.40+/-1.73 ml min(-1) g(-1) after the administration of dipyridamole, and the flow reserve (defined as the ratio of the two MBF values) was 3.82+/-2.12; these values are consistent with previous reports. Resting MBF values were significantly correlated with the heart rate-blood pressure product (RPP) (y=0.31+6.56E-5x, P
ISSN:0340-6997
1619-7070
1619-7089
DOI:10.1007/s002590050026