Guan Ji-Jing, Feng Yan-Qiu
School of Biomedical Engineering, Southern Medical University, Guangzhou, 510515 China. E-mail:
Nan Fang Yi Ke Da Xue Xue Bao. 2018 Mar 20;38(3):305-311. doi: 10.3969/j.issn.1673-4254.2018.03.10.
To evaluate the accuracy and sensitivity of quantitative susceptibility mapping (QSM) and transverse relaxation rate (R2*) mapping in the measurement of brain iron deposition.
Super paramagnetic iron oxide (SPIO) phantoms and mouse models of Parkinson's disease (PD) related to iron deposition in the substantia nigra (SN) underwent 7.0 T magnetic resonance (MR) scans (Bruker, 70/16) with a multi-echo 3D gradient echo sequence, and the acquired data were processed to obtain QSM and R2*. Linear regression analysis was performed for susceptibility and R2* in the SPIO phantoms containing 5 SPIO concentrations (30, 15, 7.5, 3.75 and 1.875 µg/mL) to evaluate the accuracy of QSM and R2* in quantitative iron analysis. The sensitivities of QSM and R2* mapping in quantitative detection of brain iron deposition were assessed using mouse models of PD induced by 1-methyl-4-phenyl-1,2,3,6-tetrahy-dropyridine (MPTP) in comparison with the control mice.
In SPIO phantoms, QSM provided a higher accuracy than R2* mapping and their goodness-of-fit coefficients (R) were 0.98 and 0.89, respectively. In the mouse models of PD and control mice, the susceptibility of the SN was significantly higher in the PD models (5.19∓1.58 vs 2.98∓0.88, n=5; P<0.05), while the R2* values were similar between the two groups (20.22∓0.94 vs 19.74∓1.75; P=0.60).
QSM allows more accurate and sensitive detection of brain iron deposition than R2*, and the susceptibility derived by QSM can be a potentially useful biomarker for studying PD.
评估定量磁化率成像(QSM)和横向弛豫率(R2*)成像在测量脑铁沉积方面的准确性和敏感性。
对与黑质铁沉积相关的帕金森病(PD)超顺磁性氧化铁(SPIO)体模和小鼠模型进行7.0 T磁共振(MR)扫描(布鲁克,70/16),采用多回波3D梯度回波序列,对采集的数据进行处理以获得QSM和R2*。对含有5种SPIO浓度(30、15、7.5、3.75和1.875μg/mL)的SPIO体模中的磁化率和R2进行线性回归分析,以评估QSM和R2在定量铁分析中的准确性。与对照小鼠相比,使用1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)诱导的PD小鼠模型评估QSM和R2*成像在定量检测脑铁沉积中的敏感性。
在SPIO体模中,QSM比R2成像具有更高的准确性,其拟合优度系数(R)分别为0.98和0.89。在PD小鼠模型和对照小鼠中,PD模型黑质的磁化率显著更高(5.19±1.58对2.98±0.88,n = 5;P<0.05),而两组之间的R2值相似(20.22±0.94对19.74±1.75;P = 0.60)。
与R2*相比,QSM能够更准确、敏感地检测脑铁沉积,并且QSM得出的磁化率可能是研究PD的潜在有用生物标志物。