Can amide proton transfer-weighted imaging differentiate tumor grade and predict Ki-67 proliferation status of meningioma?
cross_sectional · Level IV
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- Record sourced from PubMed, PMID 30887206.
- Also identified by DOI 10.1007/s00330-019-06115-w and PMC identifier 6717551.
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Abstract
To determine the utility of the amide proton transfer-weighted MR imaging in differentiating the WHO grade and predict proliferative activity of meningioma. Fifty-three patients with WHO grade I meningiomas and 26 patients with WHO grade II meningiomas underwent conventional and APT-weighted sequences on a 3.0 Tesla MR before clinical intervention. The APT-weighted (APTw) parameters in the solid tumor region were obtained and compared between two grades using the t test; the receiver operating characteristic (ROC) curve was used to assess the best parameter for predicting the grade of meningiomas. Pearson's correlation coefficient was calculated between the APTw<sub>max</sub> and Ki-67 labeling index in meningiomas. The APTw<sub>max</sub> and APTw<sub>mean</sub> values were not significantly different between WHO grade I and grade II meningiomas (p = 0.103 and p = 0.318). The APTw<sub>min</sub> value was higher and the APTw<sub>max-min</sub> value was lower in WHO grade II meningiomas than in WHO grade I tumors (p = 0.027 and p = 0.019). But the APTw<sub>min</sub> was higher and the APTw<sub>max-min</sub> was lower in microcystic meningiomas than in WHO grade II meningiomas (p = 0.001 and p = 0.006). The APTw<sub>min</sub> combined with APTw<sub>max-min</sub> showed the best diagnostic performance in predicting the grade of meningiomas with an AUC of 0.772. The APTw<sub>max</sub> value was positively correlated with Ki-67 labeling index (r = 0.817, p < 0.001) in meningiomas; the regression equation for the Ki-67 labeling index (%) (Y) and APTw<sub>max</sub> (%) (X) was Y = 4.9 × X - 12.4 (R<sup>2</sup> = 0.667, p < 0.001). As a noninvasive imaging method, the ability of APTw-MR imaging in differentiating the grade of meningiomas is limited, but the technology can be used to predict the proliferative activity of meningioma. • The APTw <sub>min</sub> value was higher and the APTw <sub>max-min</sub> value was lower in WHO grade II meningioma than in grade I tumors. • The APTw <sub>min</sub> value was higher and the APTw <sub>max-min</sub> value was lower in microcystic meningiomas than in WHO grade II meningiomas. • The APTw <sub>max</sub> value was positively correlated with meningioma proliferation index.
Medical subject headings
- Amides
- Meningeal Neoplasms
- Meningioma
- Protons