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使用ISMRM/NIST MRI系统体模从磁共振指纹成像得出的定量成像指标:一项国际多中心重复性和再现性研究。

Quantitative imaging metrics derived from magnetic resonance fingerprinting using ISMRM/NIST MRI system phantom: An international multicenter repeatability and reproducibility study.

作者信息

Shridhar Konar Amaresha, Qian Enlin, Geethanath Sairam, Buonincontri Guido, Obuchowski Nancy A, Fung Maggie, Gomez Pedro, Schulte Rolf, Cencini Matteo, Tosetti Michela, Schwartz Lawrence H, Shukla-Dave Amita

机构信息

Department of Medical Physics, Memorial Sloan Kettering Cancer Center, New York, NY, 10065, USA.

Columbia Magnetic Resonance Research Center, Columbia University in the City of New York, New York, NY, 10027, USA.

出版信息

Med Phys. 2021 May;48(5):2438-2447. doi: 10.1002/mp.14833. Epub 2021 Apr 1.

Abstract

PURPOSE

To compare the bias and inherent reliability of the quantitative (T and T ) imaging metrics generated from the magnetic resonance fingerprinting (MRF) technique using the ISMRM/NIST system phantom in an international multicenter setting.

METHOD

ISMRM/NIST MRI system phantom provides standard reference T and T relaxation values (vendor-provided) for each of the 14 vials in T and T arrays. MRF-SSFP scans repeated over 30 days on GE 1.5 and 3.0 T scanners at three collaborative centers. MRF estimated T and T values averaged over 30 days were compared with the phantom vendor-provided and spin-echo (SE) based convention gold standard (GS) method. Repeatability and reproducibility were characterized by the within-case coefficient of variation (wCV) of the MRF data acquired over 30 days, along with the biases.

RESULT

For the wide ranges of MRF estimated T values, vials #1-8 (T relaxation time between 2033 and 184 ms) exhibited a wCV less than 3% and 4%, respectively, on 3.0 and 1.5 T scanners. T values in vials #1-8 (T relaxation, 1044-45 ms) have shown wCV to be <7% on both 3.0 and 1.5 T scanners. A stronger linear correlation overall for T (R  = 0.9960 and 0.9963 at center-1 and center-2 on 3.0 T scanner, and R  = 0.9951 and 0.9988 at center-1 and center-3 on 1.5 T scanner) compared to T (R  = 0.9971 and 0.9972 at center-1 and center-2 on 3.0 T scanner, and R  = 0.9815 and 0.9754 at center-1 and center-3 on 1.5 T scanner). Bland-Altman (BA) analysis showed MRF based T and T values were within the limit of agreement (LOA) except for one data point. The mean difference or bias and 95% lower bound (LB) and upper bound (UB) LOA are reported in the format; mean bias: 95% LB LOA: 95% UB LOA. The biases for T values were 21.34: -50.00: 92.69, 21.32: -47.29: 89.94 ms, and for T values were -19.88: -42.37: 2.61, -19.06: -43.58: 5.45 ms on 3.0 T scanner at center-1 and center-2, respectively. Similarly, on 1.5 T scanner biases for T values were 26.54: -53.41: 106.50, 9.997: -51.94: 71.94 ms, and for T values were -23.84: -135.40: 87.76, -37.30: 134.30: 59.73 ms at center-1 and center-3, respectively. Additionally, the correlation between the SE based GS and MRF estimated T and T values (R  = 0.9969 and 0.9977) showed a similar trend as we observed between vendor-provided and MRF estimated T and T values (R  = 0.9963 and 0.9972). In addition to correlation, BA analysis showed that all the vials are within the LOA between the GS and vendor-provided for the T values and except one vial for T . All the vials are within the LOA between GS and MRF except one vial in T and T array. The wCV for reproducibility was <3% for both T and T values in vials #1-8, for all the 14 vials, wCV calculated for reproducibility was <4% for T values and <5% for T .

CONCLUSION

This study shows that MRF is highly repeatable (wCV <4% for T and <7% for T ) and reproducible (wCV < 3% for both T and T ) in certain vials (vials #1-8).

摘要

目的

在国际多中心环境中,使用ISMRM/NIST系统体模比较磁共振指纹图谱(MRF)技术生成的定量(T和T)成像指标的偏差和固有可靠性。

方法

ISMRM/NIST MRI系统体模为T和T阵列中的14个小瓶提供标准参考T和T弛豫值(由供应商提供)。在三个合作中心的GE 1.5和3.0 T扫描仪上,对MRF-SSFP扫描进行了30天的重复扫描。将30天内平均的MRF估计T和T值与体模供应商提供的以及基于自旋回波(SE)的传统金标准(GS)方法进行比较。通过30天内采集的MRF数据的病例内变异系数(wCV)以及偏差来表征重复性和再现性。

结果

对于MRF估计的T值的广泛范围,小瓶#1-8(T弛豫时间在2033至184 ms之间)在3.0 T和1.5 T扫描仪上分别表现出小于3%和4%的wCV。小瓶#1-8中的T值(T弛豫,1044-45 ms)在3.0 T和1.5 T扫描仪上均显示wCV<7%。与T相比,T总体上具有更强的线性相关性(在3.0 T扫描仪上,中心1和中心2处的R分别为0.9960和0.9963,在1.5 T扫描仪上,中心1和中心3处的R分别为0.9951和0.9988)(在3.0 T扫描仪上,中心1和中心2处的R分别为0.9971和0.9972,在1.5 T扫描仪上,中心1和中心3处的R分别为0.9815和0.9754)。Bland-Altman(BA)分析表明,除一个数据点外,基于MRF的T和T值在一致性界限(LOA)内。平均差异或偏差以及95%下限(LB)和上限(UB)LOA以以下格式报告;平均偏差:95% LB LOA:95% UB LOA。在3.0 T扫描仪上,中心1和中心2处T值的偏差分别为21.34:-50.00:92.69、21.32:-47.29:89.94 ms,T值的偏差分别为-19.88:-42.37:2.61、-19.06:-43.58:5.45 ms。同样,在1.5 T扫描仪上,中心1和中心3处T值的偏差分别为26.54:-53.41:106.50、9.997:-51.94:71.94 ms,T值的偏差分别为-23.84:-135.40:87.76、-37.30:134.30:59.73 ms。此外,基于SE的GS与MRF估计的T和T值之间的相关性(R分别为0.9969和0.9977)显示出与我们在供应商提供的和MRF估计的T和T值之间观察到的类似趋势(R分别为0.9963和0.9972)。除了相关性外,BA分析表明,对于T值,所有小瓶均在GS与供应商提供的值之间的LOA内,对于T,除一个小瓶外。对于T和T阵列中的所有小瓶,除一个小瓶外,所有小瓶均在GS与MRF之间的LOA内。对于小瓶#1-8中的T和T值,再现性的wCV均<3%,对于所有14个小瓶,计算得出的T值再现性wCV<4%,T值再现性wCV<5%。

结论

本研究表明,在某些小瓶(小瓶#1-8)中,MRF具有高度可重复性(T的wCV<4%,T的wCV<7%)和再现性(T和T的wCV均<3%)。

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