Department of Radiological Technology, Hokkaido University Hospital, N15, W7, Kita-Ku, Sapporo, 060-8638, Japan.
Faculty of Health Sciences, Hokkaido University, Sapporo, 060-0812, Japan.
Radiol Phys Technol. 2024 Dec;17(4):918-928. doi: 10.1007/s12194-024-00836-4. Epub 2024 Aug 28.
We aimed to evaluate the accuracy and repeatability of the T1, T2*, and proton density (PD) values obtained by quantitative parameter mapping (QPM) using the ISMRM/NIST MRI system phantom and compared them with computer simulations. We compared the relaxation times and PD obtained through QPM with the reference values of the ISMRM/NIST MRI system phantom and conventional methods. Furthermore, we evaluated the presence or absence of influences other than noise in T1 and T2* values obtained by QPM by comparing the obtained coefficient of variation (CV) with simulation results. The T1, T2*, and PD values by QPM showed a strong correlation with the measured values and the referenced values. The simulated CVs of QPM calculated for each sphere showed similar trends to those of the actual scans.
我们旨在评估使用 ISMRM/NIST MRI 系统体模进行定量参数映射 (QPM) 获得的 T1、T2* 和质子密度 (PD) 值的准确性和可重复性,并将其与计算机模拟进行比较。我们将通过 QPM 获得的弛豫时间和 PD 与 ISMRM/NIST MRI 系统体模和常规方法的参考值进行了比较。此外,我们通过比较获得的变异系数 (CV) 与模拟结果来评估 QPM 获得的 T1 和 T2* 值中除噪声以外的影响的存在或不存在。QPM 获得的 T1、T2* 和 PD 值与测量值和参考值具有很强的相关性。为每个球体计算的 QPM 的模拟 CV 显示出与实际扫描相似的趋势。