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专为 7.0 T 人体膝关节¹H/¹⁹F 磁共振成像及含氟药物成像定制的八通道收发一体射频线圈阵列。

Eight-channel transceiver RF coil array tailored for ¹H/¹⁹F MR of the human knee and fluorinated drugs at 7.0 T.

作者信息

Ji Yiyi, Waiczies Helmar, Winter Lukas, Neumanova Pavla, Hofmann Daniela, Rieger Jan, Mekle Ralf, Waiczies Sonia, Niendorf Thoralf

机构信息

Berlin Ultrahigh Field Facility (BUFF), Max Delbrück Center for Molecular Medicine, Berlin, Germany.

Institute of Biophysics and Biomedical Engineering, Faculty of Sciences of the University of Lisbon, Lisbon, Portugal.

出版信息

NMR Biomed. 2015 Jun;28(6):726-37. doi: 10.1002/nbm.3300. Epub 2015 Apr 27.

Abstract

The purpose of this study was to evaluate the feasibility of an eight-channel dual-tuned transceiver surface RF coil array for combined (1)H/(19)F MR of the human knee at 7.0 T following application of (19)F-containing drugs. The (1)H/(19)F RF coil array includes a posterior module with two (1)H loop elements and two anterior modules, each consisting of one (1)H and two (19)F elements. The decoupling of neighbor elements is achieved by a shared capacitor. Electromagnetic field simulations were performed to afford uniform transmission fields and to be in accordance with RF safety guidelines. Localized (19)F MRS was conducted with 47 and 101 mmol/L of flufenamic acid (FA) – a (19)F-containing non-steroidal anti-inflammatory drug – to determine T1 and T2 and to study the (19)F signal-to-dose relationship. The suitability of the proposed approach for (1)H/(19)F MR was examined in healthy subjects. Reflection coefficients of each channel were less than -17 dB and coupling between channels was less than -11 dB. Q(L)/Q(U) was less than 0.5 for all elements. MRS results demonstrated signal stability with 1% variation. T1 and T2 relaxation times changed with concentration of FA: T1 /T2 = 673/31 ms at 101 mmol/L and T1 /T2 = 616/26 ms at 47 mmol/L. A uniform signal and contrast across the patella could be observed in proton imaging. The sensitivity of the RF coil enabled localization of FA ointment administrated to the knee with an in-plane spatial resolution of (1.5 × 1.5) mm(2) achieved in a total scan time of approximately three minutes, which is well suited for translational human studies. This study shows the feasibility of combined (1)H/(19)F MRI of the knee at 7.0 T and proposes T1 and T2 mapping methods for quantifying fluorinated drugs in vivo. Further technological developments are necessary to promote real-time bioavailability studies and quantification of (19)F-containing medicinal compounds in vivo.

摘要

本研究的目的是评估一种八通道双调谐收发器表面射频线圈阵列在7.0 T磁场下对应用含氟药物后的人体膝关节进行联合氢/氟磁共振成像的可行性。氢/氟射频线圈阵列包括一个带有两个氢环元件的后部模块和两个前部模块,每个前部模块由一个氢元件和两个氟元件组成。相邻元件的去耦通过一个共享电容器实现。进行了电磁场模拟,以提供均匀的传输场并符合射频安全指南。使用47 mmol/L和101 mmol/L的氟芬那酸(FA)(一种含氟非甾体抗炎药)进行局部氟磁共振波谱分析,以确定T1和T2并研究氟信号与剂量的关系。在健康受试者中检验了所提出方法对氢/氟磁共振成像的适用性。每个通道的反射系数小于-17 dB,通道间耦合小于-11 dB。所有元件的Q(L)/Q(U)小于0.5。磁共振波谱分析结果表明信号稳定性变化为1%。T1和T2弛豫时间随FA浓度变化:在101 mmol/L时T1/T2 = 673/31 ms,在47 mmol/L时T1/T2 = 616/26 ms。在质子成像中可观察到髌骨上均匀的信号和对比度。射频线圈的灵敏度能够定位涂抹在膝关节上的FA软膏,在大约三分钟的总扫描时间内实现了(1.5×1.5)mm²的面内空间分辨率,这非常适合人体转化研究。本研究表明了在7.0 T磁场下对膝关节进行联合氢/氟磁共振成像的可行性,并提出了用于体内定量氟化药物的T1和T2映射方法。需要进一步的技术发展来促进实时生物利用度研究和体内含氟药用化合物的定量分析。

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