Automated Motion Correction for Myocardial Blood Flow Measurements and Diagnostic Performance of 82Rb PET Myocardial Perfusion Imaging

被引:5
作者
Kuronuma, Keiichiro [1 ,2 ]
Wei, Chih-Chun [1 ]
Singh, Ananya [1 ]
Lemley, Mark [1 ]
Hayes, Sean W. [1 ]
Otaki, Yuka [1 ]
Hyun, Mark C. [1 ]
Van Kriekinge, Serge D. [1 ]
Kavanagh, Paul [1 ]
Huang, Cathleen [1 ]
Han, Donghee [1 ]
Dey, Damini [1 ]
Berman, Daniel S. [1 ]
Slomka, Piotr J. [1 ]
机构
[1] Cedars Sinai Med Ctr, Dept Imaging & Med, Los Angeles, CA 90048 USA
[2] Nihon Univ, Dept Cardiol, Tokyo, Japan
基金
美国国家卫生研究院;
关键词
motion correction; myocardial perfusion imaging; myo- cardial blood flow; PET; rubidium; SEVERITY; RESERVE; STRESS;
D O I
10.2967/jnumed.123.266208
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Motion correction (MC) affects myocardial blood flow (MBF) measurements in Rb-82 PET myocardial perfusion imaging (MPI); however, frame-by-frame manual MC of dynamic frames is time-consuming. This study aims to develop an automated MC algorithm for time-activity curves used in compartmental modeling and compare the predictive value of MBF with and without automated MC for significant coronary artery disease (CAD). Methods: In total, 565 patients who underwent PET-MPI were considered. Patients without angiographic findings were split into training (n = 112) and validation (n = 112) groups. The automated MC algorithm used simplex iterative optimization of a count-based cost function and was developed using the training group. MBF measurements with automated MC were compared with those with manual MC in the validation group. In a separate cohort, 341 patients who underwent PET-MPI and invasive coronary angiography were enrolled in the angiographic group. The predictive performance in patients with significant CAD (>= 70% stenosis) was compared between MBF measurements with and without automated MC. Results: In the validation group (n = 112), MBF measurements with automated and manual MC showed strong correlations (r = 0.98 for stress MBF and r = 0.99 for rest MBF). The automatic MC took less time than the manual MC (<12 s vs. 10 min per case). In the angiographic group (n = 341), MBF measurements with automated MC decreased significantly compared with those without (stress MBF, 2.16 vs. 2.26 mL/g/min; rest MBF, 1.12 vs. 1.14 mL/g/min; MFR, 2.02 vs. 2.10; all P < 0.05). The area under the curve (AUC) for the detection of significant CAD by stress MBF with automated MC was higher than that without (AUC, 95% CI, 0.76 [0.71-0.80] vs. 0.73 [0.68-0.78]; P < 0.05). The addition of stress MBF with automated MC to the model with ischemic total perfusion deficit showed higher diagnostic performance for detection of significant CAD (AUC, 95% CI, 0.82 [0.77-0.86] vs. 0.78 [0.74-0.83]; P = 0.022), but the addition of stress MBF without MC to the model with ischemic total perfusion deficit did not reach significance (AUC, 95% CI, 0.81 [0.76-0.85] vs. 0.78 [0.74-0.83]; P = 0.067). Conclusion: Automated MC on Rb-82 PET-MPI can be performed rapidly with excellent agreement with experienced operators. Stress MBF with automated MC showed significantly higher diagnostic performance than without MC.
引用
收藏
页码:139 / 146
页数:8
相关论文
共 28 条
[1]   Assessment of motion correction in dynamic rubidium-82 cardiac PET with and without frame-by-frame adjustment of attenuation maps for calculation of myocardial blood flow [J].
Armstrong, Ian S. ;
Memmott, Matthew J. ;
Saint, Kimberley J. ;
Saillant, Antoine ;
Hayden, Charles ;
Arumugam, Parthiban .
JOURNAL OF NUCLEAR CARDIOLOGY, 2021, 28 (04) :1334-1346
[2]   Fractional flow reserve to determine the appropriateness of angioplasty in moderate coronary stenosis - A randomized trial [J].
Bech, GJW ;
De Bruyne, S ;
Pijls, NHJ ;
de Muinck, ED ;
Hoorntje, JC ;
Escaned, J ;
Stella, PR ;
Boersma, E ;
Bartunek, J ;
Koolen, JJ ;
Wijns, W .
CIRCULATION, 2001, 103 (24) :2928-2934
[3]   Automated dynamic motion correction improves repeatability and reproducibility of myocardial blood flow quantification with rubidium-82 PET imaging [J].
Choueiry, Justen ;
Mistry, Neel P. ;
Beanlands, Rob S. B. ;
deKemp, Robert A. .
JOURNAL OF NUCLEAR CARDIOLOGY, 2023, 30 (03) :1133-1146
[4]   Multisoftware Reproducibility Study of Stress and Rest Myocardial Blood Flow Assessed with 3D Dynamic PET/CT and a 1-Tissue-Compartment Model of 82Rb Kinetics [J].
deKemp, Robert A. ;
Declerck, Jerome ;
Klein, Ran ;
Pan, Xiao-Bo ;
Nakazato, Ryo ;
Tonge, Christine ;
Arumugam, Parthiban ;
Berman, Daniel S. ;
Germano, Guido ;
Beanlands, Rob S. ;
Slomka, Piotr J. .
JOURNAL OF NUCLEAR MEDICINE, 2013, 54 (04) :571-577
[5]   COMPARING THE AREAS UNDER 2 OR MORE CORRELATED RECEIVER OPERATING CHARACTERISTIC CURVES - A NONPARAMETRIC APPROACH [J].
DELONG, ER ;
DELONG, DM ;
CLARKEPEARSON, DI .
BIOMETRICS, 1988, 44 (03) :837-845
[6]   Routine Clinical Quantitative Rest Stress Myocardial Perfusion for Managing Coronary Artery Disease Clinical Relevance of Test-Retest Variability [J].
Kitkungvan, Danai ;
Johnson, Nils P. ;
Roby, Amanda E. ;
Patel, Monika B. ;
Kirkeeide, Richard ;
Gould, K. Lance .
JACC-CARDIOVASCULAR IMAGING, 2017, 10 (05) :565-577
[7]   PET and SPECT Tracers for Myocardial Perfusion Imaging [J].
Klein, Ran ;
Celiker-Guler, Emel ;
Rotstein, Benjamin H. ;
deKemp, Robert A. .
SEMINARS IN NUCLEAR MEDICINE, 2020, 50 (03) :208-218
[8]   Impact of regadenoson-induced myocardial creep on dynamic Rubidium-82 PET myocardial blood flow quantification [J].
Koenders, S. S. ;
van Dijk, J. D. ;
Jager, P. L. ;
Ottervanger, J. P. ;
Slump, C. H. ;
van Dalen, J. A. .
JOURNAL OF NUCLEAR CARDIOLOGY, 2019, 26 (03) :719-728
[9]   How to detect and correct myocardial creep in myocardial perfusion imaging using Rubidium-82 PET? [J].
Koenders, S. S. ;
van Dijk, J. D. ;
Jager, P. L. ;
Ottervanger, J. P. ;
Slump, C. H. ;
van Dalen, J. A. .
JOURNAL OF NUCLEAR CARDIOLOGY, 2019, 26 (03) :729-734
[10]   Automated dynamic motion correction using normalized gradient fields for 82rubidium PET myocardial blood flow quantification [J].
Lee, Benjamin C. ;
Moody, Jonathan B. ;
Poitrasson-Riviere, Alexis ;
Melvin, Amanda C. ;
Weinberg, Richard L. ;
Corbett, James R. ;
Murthy, Venkatesh L. ;
Ficaro, Edward P. .
JOURNAL OF NUCLEAR CARDIOLOGY, 2020, 27 (06) :1982-1998