Kangarlu A, Baertlein B A, Lee R, Ibrahim T, Yang L, Abduljalil A M, Robitaille P M
Department of Radiology, Ohio State University, Columbus 43210, USA.
J Comput Assist Tomogr. 1999 Nov-Dec;23(6):821-31. doi: 10.1097/00004728-199911000-00003.
Dielectric resonances have previously been advanced as a significant cause of image degradation at higher fields. In this work, a study of dielectric resonances in ultra high field MRI is presented to explore the real importance of dielectric resonances in the human brain in this setting.
Gradient-recalled echo images were acquired using a transverse electromagnetic resonator at 1.5, 4.7, and 8 T. Images were obtained from the human head and from phantoms filled with pure water, saline, and mineral oil. In addition, an exact theoretical analysis of dielectric resonances is presented for a spherical phantom and for a model of the human head.
Theoretical results demonstrate that distilled water can sustain dielectric resonances in head-sized spheres near 200 and 360 MHz, but the presence of significant conductivity suppresses these resonances. These findings are confirmed experimentally with proton images of water and saline (0.05 and 0.125 M NaCl). For lossy phantoms, coupling between the source and phantom overwhelms the dielectric resonance. Because of their low relative permittivity, mineral oil phantoms with 20 cm diameter do not exhibit dielectric resonances below approximately 900 MHz. Significant dielectric resonances were not observed in human head images obtained at 1.5, 4.7, and 8 T.
先前已提出介电共振是高场强下图像质量下降的一个重要原因。在本研究中,开展了一项关于超高场磁共振成像中介电共振的研究,以探讨在此条件下介电共振在人类大脑中的实际重要性。
使用横向电磁谐振器在1.5 T、4.7 T和8 T场强下采集梯度回波图像。图像采集对象包括人类头部以及填充有纯水、盐水和矿物油的体模。此外,还针对球形体模和人类头部模型给出了介电共振的精确理论分析。
理论结果表明,蒸馏水可在头部尺寸大小的球体中维持接近200 MHz和360 MHz的介电共振,但显著的电导率会抑制这些共振。水和盐水(0.05 M和0.125 M NaCl)的质子图像实验结果证实了这些发现。对于有损耗的体模,源与体模之间的耦合会掩盖介电共振。由于其相对介电常数较低,直径为20 cm的矿物油体模在低于约900 MHz时不会表现出介电共振。在1.5 T、4.7 T和8 T场强下采集的人类头部图像中未观察到明显的介电共振。