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Highly adaptive RF excitation scheme based on conformal resonant CRLH metamaterial ring antennas for 7-Tesla traveling-wave magnetic resonance imaging

机译:基于共形共振CRLH超材料环形天线的7-特斯拉行波磁共振成像的高度自适应RF激励方案

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We propose an adaptive RF antenna system for the excitation (and manipulation) of the fundamental circular waveguide mode (TE11) in the context of high-field (7T) traveling-wave magnetic resonance imaging (MRI). The system consists of «flat» composite right-/left-handed (CRLH) meta-material ring antennas that fully conforms to the inner surface of the MRI bore. The specific use of CRLH metamaterials is motivated by its inherent dispersion engineering capabilities, which is needed when designing resonant ring structures for virtually any predefined diameter operating at the given Larmor frequency (i.e. 298MHz). Each functional group of the RF antenna system consists of a pair of subsequently spaced and correspondingly fed CRLH ring antennas, allowing for the unidirectional excitation of propagating, circularly polarized B1 mode fields. The same functional group is also capable to simultaneously mold an incoming, counter-propagating mode. Given these functionalities we are proposing now a compound scheme (i.e. periodically arranged multiple antenna pairs) — termed as “MetaBore” — that is apt to provide a tailored RF power distribution as well as full wave reflection compensation virtually at any desired location along the bore.
机译:我们提出了一种自适应射频天线系统,用于在高场(7T)行波磁共振成像(MRI)的情况下激发(和操纵)基本圆形波导模式(TE 11 ) 。该系统由“扁平”右手/左手(CRLH)复合材料环形天线组成,完全符合MRI孔的内表面。 CRLH超常材料的固有用途是其固有的色散工程能力,这对于在给定的拉莫尔频率(即298MHz)下工作的几乎任何预定直径的共振环结构进行设计时,都需要使用CRLH超材料。 RF天线系统的每个功能组均由一对随后间隔开并相应馈电的CRLH环形天线组成,从而可以实现传播的圆极化B 1 模式场的单向激励。相同的功能组还能够同时塑造传入的反向传播模式。考虑到这些功能,我们现在提出一种复合方案(即定期布置多个天线对),称为“ MetaBore”,该方案实际上可在沿孔的任何所需位置提供量身定制的RF功率分布以及全波反射补偿。 。

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