Author:
Armstrong Ian S.,Hayden Charles,Memmott Matthew J.,Arumugam Parthiban
Abstract
Abstract
Background
In myocardial perfusion PET, images are acquired during vasodilator stress, increasing the likelihood of intra-frame motion blurring of the heart in reconstructed static images to assess relative perfusion. This work evaluated a prototype data-driven motion correction (DDMC) algorithm designed specifically for cardiac PET.
Methods
A cardiac torso phantom, with a solid defect, was scanned stationary and being manually pulled to-and-fro in the axial direction with a random motion. Non-motion-corrected (NMC) and DDMC images were reconstructed. Total perfusion deficit was measured in the defect and profiles through the cardiac insert were defined. In addition, 46 static perfusion images from 36 rubidium-82 MPI patients were selected based upon a perception of motion blurring in the images. NMC and DDMC images were reconstructed, blinded, and scored on image quality and perceived motion.
Results
Phantom data demonstrated near-perfect recovery of myocardial wall visualization and defect quantification with DDMC compared with the stationary phantom. Quality of clinical images was NMC: 10 non-diagnostic, 31 adequate, and 5 good; DDMC images: 0 non-diagnostic, 6 adequate, and 40 good.
Conclusion
The DDMC algorithm shows great promise in rubidium MPI PET with substantial improvements in image quality and the potential to salvage images considered non-diagnostic due to significant motion blurring.
Publisher
Springer Science and Business Media LLC
Subject
Cardiology and Cardiovascular Medicine,Radiology Nuclear Medicine and imaging
Reference27 articles.
1. Arasaratnam P, Al-Zahrani A, Wells RG, Beanlands RSB, deKemp RA. Respiratory motion resulting in a pseudoischemia pattern on stress PET–CT imaging. J Nucl Cardiol 2016;23:159-60.
2. Armstrong IS, Hayden C, Arumugam P. Initial evaluation of an automated high temporal resolution data-driven motion correction for rubidium cardiac relative perfusion PET. Eur J Nucl Med Mol Imaging 2019;46:S18-9.
3. Rubeaux M, Doris MK, Alessio A, Slomka PJ. Enhancing cardiac PET by motion correction techniques. Curr Cardiol Rep 2017;19:14.
4. Thompson AD, Ficaro EP, Murthy VL, Weinberg RL. Rescued diagnostic quality by motion correction of dynamic cardiac positron emission tomography (PET) perfusion images. J. Nucl Cardiol 2019;26:330-2.
5. Memmott MJ, Tonge CM, Saint KJ, Arumugam P. Impact of pharmacological stress agent on patient motion during rubidium-82 myocardial perfusion PET/CT. J Nucl Cardiol 2018;25:1286-95.
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