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Published in: Journal of Nuclear Cardiology 2/2023

Open Access 04-08-2022 | Positron Emission Tomography | Original Article

Influence of image reconstruction on quantitative cardiac 15O-water positron emission tomography

Authors: Jonny Nordström, PhD, Elin Lindström, PhD, Tanja Kero, MD, PhD, Jens Sörensen, MD, PhD, Mark Lubberink, PhD

Published in: Journal of Nuclear Cardiology | Issue 2/2023

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Abstract

Background

The impact on quantitative 15O-water PET/CT of a wide range of different reconstruction settings, including regularized reconstruction by block-sequential regularized expectation maximization (BSREM), was investigated.

Methods

Twenty clinical stress scans from patients referred for assessment of myocardial ischemia were included. Patients underwent a 4-min dynamic stress PET scan with 15O-water on a digital PET/CT scanner. Twenty-two reconstructions were generated from each scan and a clinical reconstruction was used as reference. Varied parameters were number of iterations, filter, exclusion of time-of-flight and point-spread function, and regularization parameter with BSREM. Analyses were performed in aQuant utilizing two different methods and resulting regional myocardial blood flow (MBF), perfusable tissue fraction (PTF), and transmural MBF (MBFt) values were evaluated.

Results

Across the two analyses, correlations toward the reference reconstruction were strong for all parameters (ρ ≥ 0.83). Using automated analysis and the diagnostic threshold of hyperemic MBF at 2.3 mL⋅g−1⋅min−1, diagnosis was unchanged irrespective of reconstruction method in all patients except for one, where only four of the most extreme reconstruction methods resulted in a change of diagnosis.

Conclusion

The low sensitivity of MBF values to reconstruction method and, as previously shown, scanner type and PET/CT misalignment, confirms that diagnostic hyperemic MBF cutoff values can be consistently used for 15O-water.
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Literature
1.
go back to reference Driessen RS, Bom MJ, van Diemen PA, Schumacher SP, Leonora RM, Everaars H. Incremental prognostic value of hybrid [15O]H2O positron emission tomography–computed tomography: Combining myocardial blood flow, coronary stenosis severity, and high-risk plaque morphology. Eur Heart J 2020;21:1105‐13. https://doi.org/10.1093/ehjci/jeaa192.CrossRef Driessen RS, Bom MJ, van Diemen PA, Schumacher SP, Leonora RM, Everaars H. Incremental prognostic value of hybrid [15O]H2O positron emission tomography–computed tomography: Combining myocardial blood flow, coronary stenosis severity, and high-risk plaque morphology. Eur Heart J 2020;21:1105‐13. https://​doi.​org/​10.​1093/​ehjci/​jeaa192.CrossRef
8.
go back to reference Schäfers KP, Spinks TJ, Camici PG, Bloomfield PM, Rhodes CG, Law MP, et al. Absolute quantification of myocardial blood flow with H2 15O and 3-dimensional PET: An experimental validation. J Nucl Med 2002;43:1031.PubMed Schäfers KP, Spinks TJ, Camici PG, Bloomfield PM, Rhodes CG, Law MP, et al. Absolute quantification of myocardial blood flow with H2 15O and 3-dimensional PET: An experimental validation. J Nucl Med 2002;43:1031.PubMed
11.
go back to reference Ross S. Q.Clear White Paper. Published online 2014. Ross S. Q.Clear White Paper. Published online 2014.
19.
go back to reference Watabe H, Jino H, Kawachi N, Teramoto N, Hayashi T, Ohta Y, et al. Parametric imaging of myocardial blood flow with 15O-water and PET using the basis function method. J Nucl Med 2005;46:1219.PubMed Watabe H, Jino H, Kawachi N, Teramoto N, Hayashi T, Ohta Y, et al. Parametric imaging of myocardial blood flow with 15O-water and PET using the basis function method. J Nucl Med 2005;46:1219.PubMed
21.
go back to reference Iida H, Rhodes CG, de Silva R, Yamamoto Y, Araujo LI, Maseri A, et al. Myocardial tissue fraction—Correction for partial volume effects and measure of tissue viability. J Nucl Med 1991;32:2169.PubMed Iida H, Rhodes CG, de Silva R, Yamamoto Y, Araujo LI, Maseri A, et al. Myocardial tissue fraction—Correction for partial volume effects and measure of tissue viability. J Nucl Med 1991;32:2169.PubMed
26.
go back to reference Timmer SAJ, Teunissen PFA, Danad I, Robbers LFHJ, Raijmakers PGHM, Nijveldt R, et al. In vivo assessment of myocardial viability after acute myocardial infarction: A head-to-head comparison of the perfusable tissue index by PET and delayed contrast-enhanced CMR. J Nucl Cardiol 2017;24:657‐67. https://doi.org/10.1007/s12350-015-0329-7.CrossRefPubMed Timmer SAJ, Teunissen PFA, Danad I, Robbers LFHJ, Raijmakers PGHM, Nijveldt R, et al. In vivo assessment of myocardial viability after acute myocardial infarction: A head-to-head comparison of the perfusable tissue index by PET and delayed contrast-enhanced CMR. J Nucl Cardiol 2017;24:657‐67. https://​doi.​org/​10.​1007/​s12350-015-0329-7.CrossRefPubMed
Metadata
Title
Influence of image reconstruction on quantitative cardiac 15O-water positron emission tomography
Authors
Jonny Nordström, PhD
Elin Lindström, PhD
Tanja Kero, MD, PhD
Jens Sörensen, MD, PhD
Mark Lubberink, PhD
Publication date
04-08-2022
Publisher
Springer International Publishing
Published in
Journal of Nuclear Cardiology / Issue 2/2023
Print ISSN: 1071-3581
Electronic ISSN: 1532-6551
DOI
https://doi.org/10.1007/s12350-022-03075-5

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