Can Internal Carotid Arteries Be Used for Noninvasive Quantification of Brain PET Studies?

Providência, Laura; van der Weijden, Chris W J; Mohr, Philipp; van Sluis, Joyce; van Snick, Johannes H; Slart, Riemer H J A; Dierckx, Rudi A J O; Lammertsma, Adriaan A et al. · J Nucl Med · 2024

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Abstract

Because of the limited axial field of view of conventional PET scanners, the internal carotid arteries are commonly used to obtain an image-derived input function (IDIF) in quantitative brain PET. However, time-activity curves extracted from the internal carotids are prone to partial-volume effects due to the limited PET resolution. This study aimed to assess the use of the internal carotids for quantifying brain glucose metabolism before and after partial-volume correction. <b>Methods:</b> Dynamic [<sup>18</sup>F]FDG images were acquired on a 106-cm-long PET scanner, and quantification was performed with a 2-tissue-compartment model and Patlak analysis using an IDIF extracted from the internal carotids. An IDIF extracted from the ascending aorta was used as ground truth. <b>Results:</b> The internal carotid IDIF underestimated the area under the curve by 37% compared with the ascending aorta IDIF, leading to <i>K<sub>i</sub></i> values approximately 17% higher. After partial-volume correction, the mean relative <i>K<sub>i</sub></i> differences calculated with the ascending aorta and internal carotid IDIFs dropped to 7.5% and 0.05%, when using a 2-tissue-compartment model and Patlak analysis, respectively. However, microparameters (<i>K</i> <sub>1</sub>, <i>k</i> <sub>2</sub>, <i>k</i> <sub>3</sub>) derived from the corrected internal carotid curve differed significantly from those obtained using the ascending aorta. <b>Conclusion:</b> These results suggest that partial-volume-corrected internal carotids may be used to estimate <i>K<sub>i</sub></i> but not kinetic microparameters. Further validation in a larger patient cohort with more variable kinetics is needed for more definitive conclusions.

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