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奥弗豪泽增强磁共振弹性成像

Overhauser-enhanced magnetic resonance elastography.

作者信息

Salameh Najat, Sarracanie Mathieu, Armstrong Brandon D, Rosen Matthew S, Comment Arnaud

机构信息

Department of Radiology, A. A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Charlestown, MA, USA.

Department of Radiology, Harvard Medical School, Boston, MA, USA.

出版信息

NMR Biomed. 2016 May;29(5):607-13. doi: 10.1002/nbm.3499. Epub 2016 Feb 24.

Abstract

Magnetic resonance elastography (MRE) is a powerful technique to assess the mechanical properties of living tissue. However, it suffers from reduced sensitivity in regions with short T2 and T2 * such as in tissue with high concentrations of paramagnetic iron, or in regions surrounding implanted devices. In this work, we exploit the longer T2 * attainable at ultra-low magnetic fields in combination with Overhauser dynamic nuclear polarization (DNP) to enable rapid MRE at 0.0065 T. A 3D balanced steady-state free precession based MRE sequence with undersampling and fractional encoding was implemented on a 0.0065 T MRI scanner. A custom-built RF coil for DNP and a programmable vibration system for elastography were developed. Displacement fields and stiffness maps were reconstructed from data recorded in a polyvinyl alcohol gel phantom loaded with stable nitroxide radicals. A DNP enhancement of 25 was achieved during the MRE sequence, allowing the acquisition of 3D Overhauser-enhanced MRE (OMRE) images with (1.5 × 2.7 × 9) mm(3) resolution over eight temporal steps and 11 slices in 6 minutes. In conclusion, OMRE at ultra-low magnetic field can be used to detect mechanical waves over short acquisition times. This new modality shows promise to broaden the scope of conventional MRE applications, and may extend the utility of low-cost, portable MRI systems to detect elasticity changes in patients with implanted devices or iron overload.

摘要

磁共振弹性成像(MRE)是一种评估活体组织力学特性的强大技术。然而,它在T2和T2较短的区域,如顺磁性铁浓度高的组织或植入设备周围区域,灵敏度会降低。在这项工作中,我们利用超低磁场下可实现的更长T2,结合奥弗豪泽动态核极化(DNP),在0.0065 T场强下实现快速MRE。在一台0.0065 T的MRI扫描仪上,实现了基于三维平衡稳态自由进动的带有欠采样和分数编码的MRE序列。开发了用于DNP的定制射频线圈和用于弹性成像的可编程振动系统。从加载了稳定氮氧自由基的聚乙烯醇凝胶体模记录的数据中重建了位移场和刚度图。在MRE序列期间实现了25倍的DNP增强,从而能够在6分钟内通过八个时间步长和11个层面采集分辨率为(1.5×2.7×9)mm³的三维奥弗豪泽增强MRE(OMRE)图像。总之,超低磁场下的OMRE可用于在短采集时间内检测机械波。这种新方法有望拓宽传统MRE应用的范围,并可能扩展低成本便携式MRI系统的用途,以检测植入设备或铁过载患者的弹性变化。

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