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Comparison of gated N-13 ammonia PET and gated Tc-99m sestamibi SPECT for quantitative analysis of global and regional left ventricular function
Authors:Sugako Kanayama  Ichiro Matsunari  Koji Kajinami
Affiliation:(1) Department of Internal Medicine, Saiseikai Takaoka Hospital, 387-1 Futatsuka, 933-8525 Takaoka, Toyama Prefecture, Japan;(2) The Medical and Pharmacological Research Center Foundation, Hakui, Japan;(3) Department of Cardiology, Uchinada Medical University, Uchinada, Japan
Abstract:
Background  The aim of this study was to compare global and regional left ventricular function in patients with coronary artery disease (CAD), obtained by use of Cedars-Sinai quantitative gated single photon emission computed tomography (QGS), for gated nitrogen 13 ammonia (NH3) positron emission tomography (PET) and technetium 99m sestamibi (MIBI) single photon emission computed tomography (SPECT). Methods and Results  Fifty-one patients with CAD underwent gated N-13 NH3 PET and gated MIBI SPECT. The end-diastolic volume, end-systolic volume, and ejection fraction were calculated by use of QGS. The quantitative regional wall motion (WM) and wall thickening (WT) scores for 20 segments in the myocardium were also measured by QGS. The end-diastolic volume, end-systolic volume, and ejection fraction measured by N-13 NH3 PET showed highly significant correlation with those measured by MIBI SPECT (r=0.97, r=0.97, and r=0.84, respectively). The mean correlation of WM and WT on an individual patient basis between N-13 NH3 PET and MIBI SPECT was 0.81 and 0.84, respectively. The circumferential variation of WM and TT in 20 segments showed a similar pattern with N-13 NH3 PET and MIBI SPECT. Conclusion  Gated N-13 NH3 PET combined with QGS provides information on both global and regional left ventricular function comparable to that obtained by gated Tc-99m perfusion myocardial SPECT in CAD patients.
Keywords:Gated nitrogen 13 ammonia positron emission tomography  gated technetium 99m sestamibi single photon emission computed tomography  quantitative gated single photon emission computed tomography  ejection fraction  left ventricular volumes  wall motion  wall thickening
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