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梯度缺陷对UTE MRI骨水定量的影响。

Impact of gradient imperfections on bone water quantification with UTE MRI.

作者信息

Zhao Xia, Lee Hyunyeol, Song Hee Kwon, Cheng Cheng-Chieh, Wehrli Felix W

机构信息

Department of Radiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.

出版信息

Magn Reson Med. 2020 Oct;84(4):2034-2047. doi: 10.1002/mrm.28272. Epub 2020 Apr 19.

Abstract

PURPOSE

The impact of gradient imperfections on UTE images and UTE image-derived bone water quantification was investigated at 3 T field strength.

METHODS

The effects of simple gradient time delays and eddy currents on UTE images, as well as the effects of gradient error corrections, were studied with simulation and phantom experiments. The k-space trajectory was mapped with a 2D sequence with phase encoding on both spatial axes by measuring the phase of the signal in small time increments during ramp-up of the read gradient. In vivo 3D UTE images were reconstructed with and without gradient error compensation to determine the bias in bone water quantification. Finally, imaging was performed on 2 equally configured Siemens TIM Trio systems (Siemens Medical Solutions, Erlangen, Germany) to investigate the impact of such gradient imperfections on inter-scanner measurement bias.

RESULTS

Compared to values derived from UTE images with full gradient error compensation, total bone water was found to deviate substantially with no (up to 17%) or partial (delay-only) compensation (up to 10.8%). Bound water, obtained with inversion recovery-prepared UTE, was somewhat less susceptible to gradient errors (up to 2.2% for both correction strategies). Inter-scanner comparison indicated a statistically significant bias between measurements from the 2 MR systems for both total and bound water, which either vanished or was substantially reduced following gradient error correction.

CONCLUSION

Gradient imperfections impose spatially dependent artifacts on UTE images, which compromise not only bone water quantification accuracy but also inter-scanner measurement agreement if left uncompensated.

摘要

目的

在3T场强下研究梯度缺陷对UTE图像以及UTE图像衍生的骨水定量分析的影响。

方法

通过模拟和体模实验,研究了简单梯度时间延迟和涡流对UTE图像的影响以及梯度误差校正的效果。通过在读取梯度上升期间以小时间增量测量信号相位,用在两个空间轴上进行相位编码的二维序列映射k空间轨迹。在有和没有梯度误差补偿的情况下重建体内3D UTE图像,以确定骨水定量分析中的偏差。最后,在2台配置相同的西门子TIM Trio系统(德国埃尔兰根西门子医疗解决方案公司)上进行成像,以研究这种梯度缺陷对扫描仪间测量偏差的影响。

结果

与具有完全梯度误差补偿的UTE图像得出的值相比,发现无补偿(高达17%)或部分补偿(仅延迟)(高达10.8%)时,总骨水有显著偏差。通过反转恢复准备的UTE获得的结合水对梯度误差的敏感度略低(两种校正策略下均高达2.2%)。扫描仪间比较表明,对于总骨水和结合水,两台MR系统的测量之间存在统计学上显著的偏差,在进行梯度误差校正后,该偏差消失或显著减小。

结论

梯度缺陷在UTE图像上产生空间相关伪影,如果不进行补偿,不仅会损害骨水定量分析的准确性,还会影响扫描仪间测量的一致性。

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Impact of gradient imperfections on bone water quantification with UTE MRI.梯度缺陷对UTE MRI骨水定量的影响。
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