A Comparison of Arterial Input Function Interpolation Methods for Patlak Plot Analysis of <sup>68</sup>Ga-PSMA-11 PET Prostate Cancer Studies.
basic_science · Level V
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- Record sourced from PubMed, PMID 38306263.
- Also identified by DOI 10.1109/TMI.2024.3357799 and PMC identifier 11361832.
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Abstract
Positron emission tomography (PET) imaging enables quantitative assessment of tissue physiology. Dynamic pharmacokinetic analysis of PET images requires accurate estimation of the radiotracer plasma input function to derive meaningful parameter estimates, and small discrepancies in parameter estimation can mimic subtle physiologic tissue variation. This study evaluates the impact of input function interpolation method on the accuracy of Patlak kinetic parameter estimation through simulations modeling the pharmacokinetic properties of [68Ga]-PSMA-11. This study evaluated both trained and untrained methods. Although the mean kinetic parameter accuracy was similar across all interpolation models, the trained node weighting interpolation model estimated accurate kinetic parameters with reduced overall variability relative to standard linear interpolation. Trained node weighting interpolation reduced kinetic parameter estimation variance by a magnitude approximating the underlying physiologic differences between normal and diseased prostatic tissue. Overall, this analysis suggests that trained node weighting improves the reliability of Patlak kinetic parameter estimation for [68Ga]-PSMA-11 PET.
Medical subject headings
- Prostatic Neoplasms
- Gallium Radioisotopes
- Positron-Emission Tomography
- Gallium Isotopes
- Oligopeptides
- Edetic Acid