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Tilted Microstrip Phased Arrays With Improved Electromagnetic Decoupling for Ultrahigh-Field Magnetic Resonance Imaging

机译:具有改进的电磁去耦功能的倾斜微带相控阵用于超高场磁共振成像

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摘要

One of the technical challenges in designing a dedicated transceiver radio frequency (RF) array for MR imaging in humans at ultrahigh magnetic fields is how to effectively decouple the resonant elements of the array. In this work, we propose a new approach using tilted microstrip array elements for improving the decoupling performance and potentially parallel imaging capability.To investigate and validate the proposed design technique, an 8-channel volume array with tilted straight-type microstrip elements was designed, capable for human imaging at the ultrahigh field of 7 Tesla. In this volume transceiver array, its electromagnetic decoupling behavior among resonant elements, RF field penetration to biological samples, and parallel imaging performance were studied through bench tests and in vivo MR imaging experiments.In this specific tilted element array design, decoupling among array elements changes with the tilted angle of the elements and the best decoupling can be achieved at certain tilted angle. In vivo human knee MR images were acquired using the tilted volume array at 7 Tesla for method validation.Results of this study demonstrated that the electromagnetic decoupling between array elements and the B1 field strength can be improved by using the tilted element method in microstrip RF coil array designs at the ultrahigh field of 7T.
机译:设计用于超高磁场下的人类MR成像的专用收发器射频(RF)阵列的技术挑战之一是如何有效地解耦阵列的谐振元件。在这项工作中,我们提出了一种使用倾斜微带阵列元件的新方法来提高去耦性能和潜在的平行成像能力。为了研究和验证所提出的设计技术,设计了一种带有倾斜直线型微带元件的8通道体阵列,能够在7特斯拉的超高场进行人体成像。在这种体积收发器阵列中,通过台架试验和体内MR成像实验研究了其在谐振元件之间的电磁去耦行为,射频场对生物样品的穿透以及并行成像性能。在这种特定的倾斜元件阵列设计中,阵列元件之间的去耦发生了变化通过元件的倾斜角度,可以在一定的倾斜角度实现最佳去耦。通过在7特斯拉倾斜体积阵列获取体内人膝MR图像以进行方法验证。本研究结果表明,通过在微带RF线圈中使用倾斜元素方法可以改善阵列元素之间的电磁去耦和B1场强阵列设计在7T的超高领域。

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