Motion-Corrected Imaging of the Aortic Valve with <sup>18</sup>F-NaF PET/CT and PET/MRI: A Feasibility Study.

Doris, Mhairi K; Rubeaux, Mathieu; Pawade, Tania; Otaki, Yuka; Xie, Yibin; Li, Debiao; Tamarappoo, Balaji K; Newby, David E et al. · J Nucl Med · 2017

case_report · Level V

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Abstract

We investigated whether motion correction of gated <sup>18</sup>F-fluoride PET/CT and PET/MRI of the aortic valve could improve PET quantitation and image quality. <b>Methods:</b> A diffeomorphic, mass-preserving, anatomy-guided registration algorithm was used to align the PET images from 4 cardiac gates, preserving all counts, and apply them to the PET/MRI and PET/CT data of 6 patients with aortic stenosis. Measured signal-to-noise ratios (SNRs) and target-to-background ratios (TBRs) were compared with the standard method of using only the diastolic gate. <b>Results:</b> High-intensity aortic valve <sup>18</sup>F-fluoride uptake was observed in all patients. After motion correction, SNR and TBR increased compared with the median diastolic gate (SNR, 51.61 vs. 21.0; TBR, 2.85 vs. 2.22) and the median summed data (SNR, 51.61 vs. 34.10; TBR, 2.85 vs. 1.95) (<i>P</i> = 0.028 for all). Furthermore, noise decreased from 0.105 (median, diastolic) to 0.042 (median, motion-corrected) (<i>P</i> = 0.028). <b>Conclusion:</b> Motion correction of hybrid <sup>18</sup>F-fluoride PET markedly improves SNR, resulting in improved image quality.

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