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BI-Ground Microstrip Array Coil vs. Conventional Microstrip Array Coil for Mouse Imaging at 7 Tesla

机译:双面微带阵列线圈与7特斯拉鼠标成像的传统微带阵列线圈

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At high field strengths, the need for more efficient high frequency coils has grown. Since the radiation losses and the interaction between coil and sample increase proportionally to field strength, the quality factor (Q) and the sensitivity of the coil decrease as consequence of these negative effects. Since Zhang et al proposed in 2001 a new surface coil based on the microstrip transmission line for high frequency, different Tx-Rx phased arrays based on this concept have been already introduced in animal and whole body systems at high field strengths, each of them with different modifications in order to get better field homogeneity, SNR or isolation between coil elements in the array. All these arrays for animals systems have been built for rat imaging. One of these modifications is called BI-Ground Microstrip Array Coil (BIGMAC). The implementation of a smaller two-channel BIGMAC design for mouse imaging is studied and its performance compared to a two-channel conventional Microstrip array at 7 Tesla, the higher isolation by using BIGMAC elements in comparison with conventional Microstrip elements is shown in this work.
机译:在高场强度下,需要更有效的高频线圈的需要。由于辐射损失和线圈之间的相互作用与场强按比例增加,因此由于这些负效应的结果,线圈的质量因子(Q)和线圈的灵敏度降低。由于张等人在2001年提出了一种基于高频微带传输线的新型表面线圈,因此基于该概念的不同的TX-RX相控阵已在高场强的动物和全身系统中引入,每种不同的修改,以便在阵列中的线圈元件之间获得更好的现场同质性,SNR或隔离。已经为大鼠成像建造了所有这些用于动物系统的阵列。这些修改之一称为双面微带阵列线圈(BigMac)。研究了用于鼠标成像的较小双通道BIGMAC设计的实现及其性能与7特斯拉的双通道传统微带阵列相比,通过使用BIGMAC元件与传统微带元件相比较高的隔离。

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