TY - JOUR
T1 - Evaluation of left ventricular endocardial volumes and ejection fractions computed from gated perfusion SPECT with magnetic resonance imaging
T2 - Comparison of two methods
AU - Faber, Tracy L.
AU - Vansant, Johnathan P.
AU - Pettigrew, Roderic I.
AU - Galt, James R.
AU - Blais, Michel
AU - Chatzimavroudis, George
AU - Cooke, C. David
AU - Folks, Russell D.
AU - Waldrop, Sandra M.
AU - Gurtler-Krawczynska, Elzbieta
AU - Wittry, Mark D.
AU - Garcia, Ernest V.
N1 - Funding Information:
From the Department of Radiology, Emory University School of Medicine, Atlanta, Ga,a the Department of Chemical Engineering, Cleveland State University, Cleveland, Ohio,b and the Division of Nuclear Medicine, St Louis University, St Louis, Mo.c This work was funded in part by NIH R01HL42052. Received for publication Oct 11, 2000; final revision accepted April 2, 2001. Reprint requests: Tracy L. Faber, PhD, Associate Professor of Radiology, Division of Nuclear Medicine, Emory University Hospital, 1364 Clifton Road, NE, Atlanta, GA 30322; Tracy_Faber@ emory.org. Copyright © 2001 by the American Society of Nuclear Cardiology. 1071-3581/2001/$35.00 + 0 43/1/117173 doi:10.1067/mnc.2001.117173
PY - 2001
Y1 - 2001
N2 - Background. Two methods of computing left ventricular volumes and ejection fraction (EF) from 8-frame gated perfusion single photon emission computed tomography (SPECT) were compared with each other and with magnetic resonance (MR) imaging. Methods and Results. Thirty-five subjects underwent 8-frame gated dual-isotope SPECT imaging and 12- to 16-frame gated MR imaging. Endocardial boundaries on short-axis MR images were hand traced by experts blinded to any SPECT results. Volumes and EF were computed with the use of Simpson's rule. SPECT images were analyzed for the same functional variables with the use of 2 automatic programs, Quantitative Gated SPECT (QGS) and the Emory Cardiac Toolbox (ECTb). The mean difference between MR and SPECT EF was 0.008 for ECTb and 0.08 for QGS. QGS showed a slight trend toward higher correlation for EF (r = 0.72, SE of the estimate = 0.08) than ECTb (r = 0.70, SE of the estimate = 0.09). For both SPECT methods, left ventricular volumes were similarly correlated with MR, although SPECT volumes were higher than MR values by approximately 30%. Conclusions. QGS and ECTb values of cardiac function computed from 8-frame gated perfusion SPECT correlate very well with each other and correlate well with MR. Averaged over all subjects, ECTb measurements of EF are not significantly different from MR values but QGS significantly underestimates the MR values.
AB - Background. Two methods of computing left ventricular volumes and ejection fraction (EF) from 8-frame gated perfusion single photon emission computed tomography (SPECT) were compared with each other and with magnetic resonance (MR) imaging. Methods and Results. Thirty-five subjects underwent 8-frame gated dual-isotope SPECT imaging and 12- to 16-frame gated MR imaging. Endocardial boundaries on short-axis MR images were hand traced by experts blinded to any SPECT results. Volumes and EF were computed with the use of Simpson's rule. SPECT images were analyzed for the same functional variables with the use of 2 automatic programs, Quantitative Gated SPECT (QGS) and the Emory Cardiac Toolbox (ECTb). The mean difference between MR and SPECT EF was 0.008 for ECTb and 0.08 for QGS. QGS showed a slight trend toward higher correlation for EF (r = 0.72, SE of the estimate = 0.08) than ECTb (r = 0.70, SE of the estimate = 0.09). For both SPECT methods, left ventricular volumes were similarly correlated with MR, although SPECT volumes were higher than MR values by approximately 30%. Conclusions. QGS and ECTb values of cardiac function computed from 8-frame gated perfusion SPECT correlate very well with each other and correlate well with MR. Averaged over all subjects, ECTb measurements of EF are not significantly different from MR values but QGS significantly underestimates the MR values.
KW - Ejection fraction
KW - Left ventricle
KW - Magnetic resonance
KW - Quantitative gated single photon emission computed tomography
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U2 - 10.1067/mnc.2001.117173
DO - 10.1067/mnc.2001.117173
M3 - Article
C2 - 11725260
AN - SCOPUS:18044368618
SN - 1071-3581
VL - 8
SP - 645
EP - 651
JO - Journal of Nuclear Cardiology
JF - Journal of Nuclear Cardiology
IS - 6
ER -