Apparent diffusion coefficient maps obtained from high b value diffusion-weighted imaging in the preoperative evaluation of gliomas at 3T: comparison with standard b value diffusion-weighted imaging.
prospective_cohort · Level II
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- Record sourced from PubMed, PMID 28639047.
- Also identified by DOI 10.1007/s00330-017-4910-0.
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Abstract
To assess whether ADC maps obtained from high b value DWI were more valuable in preoperatively evaluating the grade, Ki-67 index and outcome of gliomas. Sixty-three patients with gliomas, who underwent preoperative multi b value DWI at 3 T, were enrolled. The ADC<sub>1000</sub>, ADC<sub>2000</sub> and ADC<sub>3000</sub> maps were generated. Receiver operating characteristic analyses were conducted to determine the area under the curve (AUC) in differentiating high-grade gliomas (HGG) from low-grade gliomas (LGG). Pearson correlation coefficients (R value) were calculated to investigate the correlation between parameters with the Ki-67 proliferation index. Survival analysis was conducted by using Cox regression. The AUC of the mean ADC<sub>1000</sub> value (0.820) was lower than that of the mean ADC<sub>2000</sub> value (0.847) and mean ADC<sub>3000</sub> value (0.875) in differentiating HGG from LGG. The R value of the mean ADC<sub>1000</sub> value (-0.499) was less negative than that of the mean ADC<sub>2000</sub> value (-0.530) and mean ADC<sub>3000</sub> value (-0.567). The mean ADC<sub>3000</sub> value was an independent prognosis factor for gliomas (p = 0.008), while the mean ADC<sub>1000</sub> and ADC<sub>2000</sub> values were not. ADC maps obtained from high b value DWI might be a better imaging biomarker in the preoperative evaluation of gliomas. • ADC <sub>3000</sub> maps could improve the differentiation between HGG and LGG. • The mean ADC <sub>3000</sub> value had a closer correlation with the Ki-67 index. • The mean ADC <sub>3000</sub> value was an independent prognosis factor for gliomas.
Medical subject headings
- Brain Mapping
- Brain Neoplasms
- Diffusion Magnetic Resonance Imaging
- Glioma
- Image Processing, Computer-Assisted
- Neoplasm Grading
- Neurosurgical Procedures