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Gain of Imaging Fidelity by Employing a Higher Number of Independent Transmit Channels Together with Slice-Selective Radio-Frequency (RF) Shimming at 7T

机译:通过使用更多数量的独立发射通道以及7T处的切片选择射频(RF)匀场获得成像保真度

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摘要

Dielectric resonance effects and radio-frequency (RF) power deposition have become challenging issues for magnetic resonance imaging at ultrahigh-field (UHF) strengths. The use of transmit (Tx) coil arrays with independently-driven RF sources using a parallel transmission system is a promising method for alleviating the resulting RF inhomogeneities. In this study, the effect on homogeneity and RF-power when employing a higher number of transmit channels with multi-slice acquisition in vivo at high field strength (7T) is scrutinized. An 8-channel head coil array was driven to emulate circular polarized (CP) and 2-, 4-, and 8-channel independent transmit configurations at 7T. Static RF shimming was employed on human subjects in order to homogenize the B1+ field in the excited volume. Slice-selective and global RF shimming methods were applied with CP and 2-, 4-, and 8-channel transmit channel configurations. RF shimming was performed from CP to 2-, 4-, and 8-channel Tx configurations globally and slice-selectively. Systematic improvement in B1+ homogeneity and/or reduction in RF-power were observed. RF shimming in the human brain with 8-channel transmit and slice-selective shimming yields an increase in B1+ homogeneity of 43% and/or reduces RF-power by 68% when compared with CP global RF shimming at 7T.
机译:对于超高场(UHF)强度的磁共振成像,介电共振效应和射频(RF)功率沉积已成为具有挑战性的问题。使用具有并行驱动系统的独立驱动的RF源的发射(Tx)线圈阵列可以缓解所产生的RF不均匀性,这是一种很有前途的方法。在这项研究中,研究了在高场强(7T)下采用大量的体内多切片采集的发射通道时,对均匀性和RF功率的影响。驱动了一个8通道头线圈阵列,以仿真7T时的圆极化(CP)和2、4和8通道独立发射配置。为了使激发体积中的B1 + 场均匀,对人类受试者进行了静态RF匀场。切片选择和全局RF匀场方法应用于CP以及2通道,4通道和8通道发送通道配置。 RF匀场是从CP全局地和切片选择性地执行到2通道,4通道和8通道Tx配置的。观察到B1 + 同质性的系统性改善和/或RF功率的降低。与CP全局RF匀场相比,通过8通道发射和切片选择匀场对人脑进行RF匀场可使B1 + 同质性提高43%,并且/或者将RF功率降低68%在7时。

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