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通过跟踪线圈增强的运动补偿实时磁共振测温技术。

Motion-compensated real-time MR thermometry augmented by tracking coils.

作者信息

Wang Peng, Unal Orhan

机构信息

Medical Physics, University of Wisconsin - Madison, Wisconsin, USA.

出版信息

J Magn Reson Imaging. 2015 Mar;41(3):851-7. doi: 10.1002/jmri.24574. Epub 2014 Jan 30.

Abstract

PURPOSE

To develop and evaluate a real-time proton resonant frequency (PRF) based MR thermometry method with a novel motion compensation technique, using linear phase model and active tracking coils.

MATERIALS AND METHODS

A 6F catheter with multiple tracking coils and radiofrequency (RF) ablation tip was built for ex vivo experiments using excised bovine liver on a 1.5 Tesla scanner. A real-time MR acquisition scheme with interleaved active catheter tracking and multislice imaging was implemented. To evaluate the proposed method, in-plane periodic linear motion and through-plane irregular motion were induced by the rocker capability of the scanner and hand, respectively. Real-time temperature maps of the tissue undergoing a 2-min RF ablation cycle were obtained and used to compare the performance of the proposed method with that of the multi-baseline method.

RESULTS

The temporal window achieved per acquisition of one slice and catheter tracking is ∼380 ms. The standard deviations of tracking errors are less than 1 mm for both irregular and periodic motions in x-y plane. The measurements at the heated and unheated regions demonstrate that the proposed thermometry method perform equally well for both in-plane and through-plane motion while maintaining a similar accuracy (σ = 1.10 versus 1.04°C) compared with the conventional multi-baseline method.

CONCLUSION

The new MR thermometry method using catheter-based tracking coils and linear phase model for motion compensation and phase correction is promising and may offer reliable MR thermometry for real-time MRI-guided thermal therapies.

摘要

目的

开发并评估一种基于质子共振频率(PRF)的实时磁共振测温方法,该方法采用线性相位模型和有源跟踪线圈的新型运动补偿技术。

材料与方法

构建了一种带有多个跟踪线圈和射频(RF)消融尖端的6F导管,用于在1.5特斯拉扫描仪上对切除的牛肝进行离体实验。实施了一种具有交错有源导管跟踪和多层成像的实时磁共振采集方案。为评估所提出的方法,分别通过扫描仪的摇杆功能和手动操作诱导平面内周期性线性运动和平面外不规则运动。获取了经历2分钟射频消融周期的组织的实时温度图,并用于将所提出方法的性能与多基线方法的性能进行比较。

结果

每次采集一层图像和进行导管跟踪所实现的时间窗口约为380毫秒。对于x - y平面内的不规则运动和周期性运动,跟踪误差的标准差均小于1毫米。在加热区域和未加热区域的测量结果表明,所提出的测温方法在平面内和平面外运动中表现同样良好,与传统多基线方法相比,保持了相似的精度(标准差分别为1.10和1.04°C)。

结论

使用基于导管的跟踪线圈以及线性相位模型进行运动补偿和相位校正的新型磁共振测温方法具有前景,可为实时磁共振引导的热疗提供可靠的磁共振测温。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a5b/4544869/9dcf9eb9e6fa/nihms716419f1.jpg

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