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Variable Power Combiner for RF Mode Shimming in 7-T MR Imaging

机译:用于7-T MR成像中RF模式匀场的可变功率合成器

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摘要

This contribution discusses the utilization of RF power in an MRI system with RF mode shimming which enables the superposition of circularly polarized modes of a transmit RF coil array driven by a Butler matrix. Since the required power for the individual modes can vary widely, mode-shimming can result in a significant underutilization of the total available RF power. A variable power combiner (VPC) is proposed to improve the power utilization: it can be realized as a reconfiguration of the MRI transmit system by the inclusion of one additional matrix network which receives the power from all transmit amplifiers at its input ports and provides any desired (combined) power distribution at its output ports by controlling the phase and amplitude of the amplifiers’ input signals. The power distribution at the output ports of the VPC is then fed into the “mode” ports of the coil array Butler matrix in order to superimpose the spatial modes at the highest achievable power utilization. The VPC configuration is compared to the standard configuration of the transmit chain of our MRI system with 8 transmit channels and 16 coils. In realistic scenarios, improved power utilization was achieved from 17% to 60% and from 14% to 55% for an elliptical phantom and a region of interest in the abdomen, respectively, and an increase of the power utilization of 1 dB for a region of interest in the upper leg. In general, it is found that the VPC allows significant improvement in power utilization when the shimming solution demands only a few modes to be energized, while the technique can yield loss in power utilization in cases with many modes required at high power level.
机译:该文稿讨论了在具有RF模式匀场的MRI系统中利用RF功率,该模式可以叠加由Butler矩阵驱动的发射RF线圈阵列的圆极化模式。由于各个模式所需的功率可能相差很大,因此模式调整可能会导致总的可用RF功率严重不足。提出了一种可变功率组合器(VPC)以提高功率利用率:可以通过包含一个附加的矩阵网络将其实现为MRI发射系统的重新配置,该矩阵网络从其输入端口处的所有发射放大器接收功率并提供任何通过控制放大器的输入信号的相位和幅度,在其输出端口获得所需的(组合)功率分配。然后,将VPC输出端口处的功率分配馈入线圈阵列Butler矩阵的“模式”端口,以便以最高可实现的功率利用率叠加空间模式。将VPC配置与我们的MRI系统具有8个传输通道和16个线圈的传输链的标准配置进行了比较。在实际情况下,椭圆体模和腹部感兴趣区域的功率利用率分别从17%提高到60%和从14%达到55%,并且该区域的功率利用率提高了1 dB对大腿感兴趣。通常,可以发现,当匀场解决方案仅需要为几种模式通电时,VPC可以显着提高功率利用率,而在高功率水平上需要多种模式的情况下,该技术会导致功率利用率下降。

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