Schmidt Rita, Teeuwisse Wouter, Webb Andrew
C.J.Gorter Center for High Field MRI, Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.
Magn Reson Med. 2017 Jun;77(6):2431-2437. doi: 10.1002/mrm.26301. Epub 2016 Jun 25.
To design and characterize dual-segment dielectric resonators (DR) and assess their performance for in vivo imaging and localized proton spectroscopy at 7 Tesla.
Annular DRs operating in the HEM mode at ultrahigh field have advantage of a simple design with an intrinsically circularly polarized homogeneous mode. However, practical realization for extremity imaging requires a splittable design for patient comfort and positioning. Splitting the annulus segments breaks the resonator symmetry and the circularly polarized distribution is lost. Here, we show that one can restore the electromagnetic modes by incorporating copper connectors between the segments. By designing the connectors such that two modes become frequency degenerate, one can also generate circularly polarized modes in a half-annular resonator. Electromagnetic simulations were performed and phantom and in vivo experiments conducted using custom-built DRs.
Electromagnetic simulations showed that using copper interconnectors, the resonant modes could be restored. This was confirmed in phantom experiments, as well as in vivo images of the human knee using a dual-segment splittable annular DR and images and localized spectra of the human calf muscle acquired using a dual-segment half-annular resonator.
A new approach incorporating copper connectors into the DR structure allows efficient operation of splittable DRs. Magn Reson Med 77:2431-2437, 2017. © 2016 International Society for Magnetic Resonance in Medicine.
设计并表征双段介质谐振器(DR),并评估其在7特斯拉场强下用于体内成像和局部质子波谱分析的性能。
在超高场下以HEM模式工作的环形DR具有设计简单且固有圆极化均匀模式的优点。然而,用于肢体成像的实际应用需要一种可拆分的设计,以提高患者舒适度和便于定位。将环形段拆分会破坏谐振器的对称性并失去圆极化分布。在此,我们表明可以通过在各段之间加入铜制连接器来恢复电磁模式。通过设计连接器使两种模式发生频率简并,还可以在半环形谐振器中产生圆极化模式。进行了电磁模拟,并使用定制的DR进行了体模实验和体内实验。
电磁模拟表明,使用铜制互连器可以恢复谐振模式。这在体模实验中得到了证实,同时也在使用双段可拆分环形DR获得的人体膝盖体内图像以及使用双段半环形谐振器获得的人体小腿肌肉图像和局部波谱中得到了验证。
一种将铜制连接器纳入DR结构的新方法可使可拆分DR高效运行。《磁共振医学》77:2431 - 2437, 2017。© 2016国际磁共振医学学会。