Differentiation between glioblastoma and primary CNS lymphoma: application of DCE-MRI parameters based on arterial input function obtained from DSC-MRI.

Kang, Koung Mi; Choi, Seung Hong; Chul-Kee, Park; Kim, Tae Min; Park, Sung-Hye; Lee, Joo Ho; Lee, Soon-Tae; Hwang, Inpyeong et al. · Eur Radiol · 2021

retrospective_cohort · Level III

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Abstract

This study aimed to evaluate whether arterial input functions (AIFs) obtained from dynamic susceptibility contrast (DSC)-MRI (AIF<sub>DSC</sub>) improve the reliability and diagnostic accuracy of dynamic contrast-enhanced (DCE)-derived pharmacokinetic (PK) parameters for differentiating glioblastoma from primary CNS lymphoma (PCNSL) compared with AIFs derived from DCE-MRI (AIF<sub>DCE</sub>). This retrospective study included 172 patients with glioblastoma (n = 147) and PCNSL (n = 25). All patients had undergone preoperative DSC- and DCE-MRI. The volume transfer constant (K<sup>trans</sup>), volume of the vascular plasma space (v<sub>p</sub>), and volume of the extravascular extracellular space (v<sub>e</sub>) were acquired using AIF<sub>DSC</sub> and AIF<sub>DCE</sub>. The relative cerebral blood volume (rCBV) was obtained from DSC-MRI. Intraclass correlation coefficients (ICC) and ROC curves were used to assess the reliability and diagnostic accuracy of individual parameters. The mean K<sup>trans</sup>, v<sub>p</sub>, and v<sub>e</sub> values revealed better ICCs with AIF<sub>DSC</sub> than with AIF<sub>DCE</sub> (K<sup>trans</sup>, 0.911 vs 0.355; v<sub>p</sub>, 0.766 vs 0.503; v<sub>e</sub>, 0.758 vs 0.657, respectively). For differentiating all glioblastomas from PCNSL, the mean rCBV (AUC = 0.856) was more accurate than the AIF<sub>DSC</sub>-driven mean K<sup>trans</sup>, which had the largest AUC (0.711) among the DCE-derived parameters (p = 0.02). However, for glioblastomas with low rCBV (≤ 75th percentile of PCNSL; n = 30), the AIF<sub>DSC</sub>-driven mean K<sup>trans</sup> and v<sub>p</sub> were more accurate than rCBV (AUC: K<sup>trans</sup>, 0.807 vs rCBV, 0.515, p = 0.004; v<sub>p</sub>, 0.715 vs rCBV, p = 0.045). DCE-derived PK parameters using the AIF<sub>DSC</sub> showed improved reliability and diagnostic accuracy for differentiating glioblastoma with low rCBV from PCNSL. • An accurate differential diagnosis of glioblastoma and PCNSL is crucial because of different therapeutic strategies. • In contrast to the rCBV from DSC-MRI, another perfusion imaging technique, the DCE parameters for the differential diagnosis have been limited because of the low reliability of AIFs from DCE-MRI. • When we analyzed DCE-MRI data using AIFs from DSC-MRI (AIF<sub>DSC</sub>), AIF<sub>DSC</sub>-driven DCE parameters showed improved reliability and better diagnostic accuracy than rCBV for differentiating glioblastoma with low rCBV from PCNSL.

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