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采用混合单侧和双侧血流编码及速度谱分离的相位对比磁共振成像

Phase-contrast MRI with hybrid one and two-sided flow-encoding and velocity spectrum separation.

作者信息

Wang Da, Shao Jiaxin, Ennis Daniel B, Hu Peng

机构信息

Department of Radiological Sciences, David Geffen School of Medicine, University of California, Los Angeles, California, USA.

Biomedical Physics Interdepartmental Graduate Program, University of California, Los Angeles, California, USA.

出版信息

Magn Reson Med. 2017 Jul;78(1):182-192. doi: 10.1002/mrm.26366. Epub 2016 Aug 9.

Abstract

PURPOSE

To develop and evaluate a phase-contrast MRI (PC-MRI) technique with hybrid one and two-sided flow-encoding and velocity spectrum separation (HOTSPA) for accelerated blood flow and velocity measurement.

METHODS

In the HOTSPA technique, the two-sided flow encoding (FE) is used for two FE directions and one-sided is used for the remaining FE direction. Such a temporal modulation of the FE strategy allows for separations of the Fourier velocity spectrum into components for the flow-compensated and the three-directional velocity waveforms, accelerating PC-MRI by encoding three-directional velocities using only two repetition times (TRs) instead of four TRs as in standard PC-MRI. The HOTSPA was evaluated and compared with standard PC-MRI in the common carotid arteries of six healthy volunteers.

RESULTS

Total volumetric flow and peak velocity measurements based on HOTSPA and the conventional PC-MRI were in good agreement with a bias of -0.005 mL (-0.1% relative bias error) for total volumetric flow and 1.21 cm/s (1.1% relative bias error) for peak velocity, although the total acquisition time was 50% of the conventional PC-MRI.

CONCLUSION

The proposed HOTSPA technique achieved nearly two-fold acceleration of PC-MRI while maintaining accuracy for total volumetric flow and peak velocity quantification by separating the paired acquisitions in the Fourier velocity spectrum domain. Magn Reson Med 78:182-192, 2017. © 2016 International Society for Magnetic Resonance in Medicine.

摘要

目的

开发并评估一种具有混合单侧和双侧血流编码以及速度谱分离功能的相位对比磁共振成像(PC-MRI)技术(HOTSPA),用于加速血流和速度测量。

方法

在HOTSPA技术中,双侧血流编码(FE)用于两个FE方向,单侧血流编码用于其余的FE方向。这种FE策略的时间调制允许将傅里叶速度谱分离为血流补偿分量和三向速度波形分量,通过仅使用两个重复时间(TR)而不是标准PC-MRI中的四个TR来编码三向速度,从而加速PC-MRI。在六名健康志愿者的颈总动脉中对HOTSPA进行了评估,并与标准PC-MRI进行了比较。

结果

基于HOTSPA和传统PC-MRI的总体积流量和峰值速度测量结果高度一致,总体积流量的偏差为-0.005 mL(相对偏差误差为-0.1%),峰值速度的偏差为1.21 cm/s(相对偏差误差为1.1%),尽管总采集时间仅为传统PC-MRI的50%。

结论

所提出的HOTSPA技术通过在傅里叶速度谱域中分离成对采集,实现了PC-MRI近两倍的加速,同时保持了总体积流量和峰值速度量化的准确性。《磁共振医学》78:182-192, 2017。© 2016国际磁共振医学学会。

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本文引用的文献

1
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Magn Reson Med. 2015 Feb;73(2):505-13. doi: 10.1002/mrm.25133. Epub 2014 Feb 14.
2
Convex gradient optimization for increased spatiotemporal resolution and improved accuracy in phase contrast MRI.
Magn Reson Med. 2014 Dec;72(6):1552-64. doi: 10.1002/mrm.25059. Epub 2013 Dec 17.
3
Carotid blood flow measurement accelerated by compressed sensing: validation in healthy volunteers.
Magn Reson Imaging. 2013 Nov;31(9):1485-91. doi: 10.1016/j.mri.2013.05.009. Epub 2013 Jul 3.
4
4D flow MRI.
J Magn Reson Imaging. 2012 Nov;36(5):1015-36. doi: 10.1002/jmri.23632.
7
Shared velocity encoding: a method to improve the temporal resolution of phase-contrast velocity measurements.
Magn Reson Med. 2012 Sep;68(3):703-10. doi: 10.1002/mrm.23273. Epub 2011 Dec 2.
8
Accelerated phase-contrast cine MRI using k-t SPARSE-SENSE.
Magn Reson Med. 2012 Apr;67(4):1054-64. doi: 10.1002/mrm.23088. Epub 2011 Nov 14.
10
Cardiovascular applications of phase-contrast MRI.
AJR Am J Roentgenol. 2009 Mar;192(3):662-75. doi: 10.2214/AJR.07.3744.

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