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时分辨磁共振指纹成像技术在放射治疗运动管理中的应用。

Time-resolved magnetic resonance fingerprinting for radiotherapy motion management.

机构信息

Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong.

Department of Diagnostic Radiology, The University of Hong Kong, Hong Kong.

出版信息

Med Phys. 2020 Dec;47(12):6286-6293. doi: 10.1002/mp.14513. Epub 2020 Nov 1.

Abstract

PURPOSE

This study aims to develop a novel time-resolved magnetic resonance fingerprinting (TR-MRF) technique for respiratory motion imaging applications.

MATERIALS AND METHODS

The TR-MRF technique consists of repeated MRF acquisitions using an unbalanced steady-state free precession sequence with spiral-in-spiral-out trajectory. Time-resolved magnetic resonance fingerprinting was first tested via computer simulation using a four-dimensional (4D) extended cardiac-torso (XCAT) phantom for both regular and irregular breathing profiles, and was tested in three healthy volunteers. Parametric TR-MRF maps at different respiratory phases were subsequently estimated using our TR-MRF sorting and reconstruction techniques. The resulting TR-MRF maps were evaluated using a set of metrices related to radiotherapy applications, including absolute difference in motion amplitude, error in the amplitude of diaphragm motion (ADM), tumor volume error (TVE), signal-to-noise ratio (SNR), and tumor contrast.

RESULTS

TR-MRF maps with regular and irregular breathing were successfully generated in XCAT phantom. Numerical simulations showed that the TVE were 1.6 ± 2.7% and 1.3 ± 2.2%, the average absolute differences in tumor motion amplitude were 0.3 ± 0.7 mm and 0.3 ± 0.6 mm, and the ADM were 4.1 ± 0.9% and 3.5 ± 0.9% for irregular and regular breathing, respectively. The SNR of the T and T maps of the liver and the tumor were generally higher for regular breathing compared to irregular breathing, whereas tumor-to-liver contrast is similar between the two breathing patterns. The proposed technique was successfully implemented on the healthy volunteers.

CONCLUSION

We have successfully demonstrated in both digital phantom and healthy subjects a novel TR-MRF technique capable of imaging respiratory motions with simultaneous quantification of MR multiparametric maps.

摘要

目的

本研究旨在开发一种新的时间分辨磁共振指纹成像(TR-MRF)技术,用于呼吸运动成像应用。

材料和方法

TR-MRF 技术由使用不平衡稳态自由进动序列和螺旋内-螺旋外轨迹进行的多次 MRF 采集组成。TR-MRF 首先通过使用四维(4D)扩展心脏-胸体(XCAT)体模进行计算机模拟进行测试,用于常规和不规则呼吸轮廓,并在 3 名健康志愿者中进行了测试。随后,使用我们的 TR-MRF 分类和重建技术估计不同呼吸相位的参数 TR-MRF 图谱。使用与放射治疗应用相关的一组度量标准评估生成的 TR-MRF 图谱,包括运动幅度的绝对差异、膈肌运动幅度(ADM)的误差、肿瘤体积误差(TVE)、信噪比(SNR)和肿瘤对比度。

结果

在 XCAT 体模中成功生成了具有规则和不规则呼吸的 TR-MRF 图谱。数值模拟表明,TVE 分别为 1.6±2.7%和 1.3±2.2%,肿瘤运动幅度的平均绝对差异分别为 0.3±0.7mm 和 0.3±0.6mm,ADM 分别为 4.1±0.9%和 3.5±0.9%用于不规则和规则呼吸。与不规则呼吸相比,肝脏和肿瘤的 T 和 T 图谱的 SNR 通常在规则呼吸时更高,而肿瘤与肝脏的对比度在两种呼吸模式之间相似。该技术在健康志愿者中成功实施。

结论

我们在数字体模和健康受试者中成功地证明了一种新的 TR-MRF 技术,该技术能够成像呼吸运动,并同时定量磁共振多参数图谱。

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