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磁共振空化动力学编码(MR-CaDE)成像

MR-Cavitation Dynamics Encoded (MR-CaDE) imaging.

作者信息

Gupta Dinank, Kaovasia Tarana P, Allen Steven P, Nielsen Jon-Fredrik, Hall Timothy L, Xu Zhen, Noll Douglas C

机构信息

Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.

Electrical and Computer Engineering, Brigham Young University, Provo, Utah, USA.

出版信息

Magn Reson Med. 2025 Aug;94(2):665-677. doi: 10.1002/mrm.30517. Epub 2025 Apr 7.

Abstract

PURPOSE

To develop methods for dynamic cavitation monitoring of a non-invasive ultrasound mechanical ablation technology (histotripsy) in the brain and test its feasibility for treatment monitoring in ex-vivo brain in a human MRI scanner.

METHODS

A Gradient Echo (GRE) pulse sequence was modified with a bipolar gradient to perform MR-Cavitation Dynamics Encoded (MR-CaDE) imaging. Cavitation generated by histotripsy sonication was monitored using MR-CaDE imaging in ex-vivo bovine brain tissues on a human MRI scanner. Bipolar gradients with a b-value of and smaller were used while a trigger was sent from the MR scanner to the histotripsy driving electronics. MR acquisition was performed with TE/TR: with 1.5-cycle histotripsy sonications at 1 pulse/TR. Feasibility of treatment monitoring was also evaluated for histotripsy through an excised human skull.

RESULTS

The MR-CaDE imaging pulse sequence was used to perform treatment monitoring of cavitation generated by histotripsy with a temporal resolution of with a spiral readout. A decrease in the image magnitude and an increase in the phase was observed with an increasing number of histotripsy sonications. The magnitude image exhibited a peak loss of 50%, and the phase image exhibited a maximum increase of 0.64rad compared to the baseline signal level in the brain. The peak signal magnitude change aligned well with the array's geometrical focus, and the post-histotripsy lesion visualized on a DWI ( ) scan with an alignment error of and in the transverse and longitudinal axes, respectively. The area of the histotripsy response using the spiral readout in the magnitude and phase images were and , respectively.

CONCLUSION

This work demonstrated the feasibility of the MR-CaDE pulse sequence, which can be used to monitor cavitation events in the brain generated by histotripsy.

摘要

目的

开发用于脑部无创超声机械消融技术(组织粉碎术)动态空化监测的方法,并在人体MRI扫描仪中测试其在离体脑部治疗监测中的可行性。

方法

采用双极梯度对梯度回波(GRE)脉冲序列进行修改,以执行MR空化动力学编码(MR-CaDE)成像。在人体MRI扫描仪上,使用MR-CaDE成像监测组织粉碎术超声处理产生的空化,在离体牛脑组织中进行。使用b值为 及更小的双极梯度,同时从MR扫描仪向组织粉碎术驱动电子设备发送触发信号。采用TE/TR: 进行MR采集,在1个脉冲/TR时进行1.5周期的组织粉碎术超声处理。还通过切除的人类颅骨评估了组织粉碎术治疗监测的可行性。

结果

MR-CaDE成像脉冲序列用于监测组织粉碎术产生的空化的治疗情况,采用螺旋读出时时间分辨率为 。随着组织粉碎术超声处理次数的增加,观察到图像幅度减小和相位增加。与脑部基线信号水平相比,幅度图像显示峰值损失为50%,相位图像显示最大增加为0.64rad。峰值信号幅度变化与阵列的几何焦点对齐良好,组织粉碎术后病变在DWI( )扫描上可视化,在横轴和纵轴上的对齐误差分别为 和 。在幅度和相位图像中使用螺旋读出的组织粉碎术响应区域分别为 和 。

结论

这项工作证明了MR-CaDE脉冲序列的可行性,该序列可用于监测组织粉碎术在脑部产生的空化事件。

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