首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Simultaneous multislice multiband parallel radiofrequency excitation with independent slice-specific transmit B1 homogenization
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Simultaneous multislice multiband parallel radiofrequency excitation with independent slice-specific transmit B1 homogenization

机译:具有独立的特定于切片的发射B1均质化的同时多层多频带并行射频激励

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Purpose To develop a new parallel transmit (pTx) pulse design for simultaneous multiband (MB) excitation in order to tackle simultaneously the problems of transmit B1 (B1+) inhomogeneity and total radiofrequency (RF) power, so as to allow for optimal RF excitation when using MB pulses for slice acceleration for high and ultrahigh field MRI. Methods With the proposed approach, each of the bands that are simultaneously excited is subject to a band-specific set of B1 complex shim weights. The method was validated in the human brain at 7T using a 16-channel pTx system and was compared to conventional MB pulses operating in the circularly polarized (CP) mode. Further numerical simulations based on measured B1 maps were conducted. Results The new method improved B1+ homogeneity by 60% when keeping the total RF power constant and reduced total RF power by 72% when keeping the excitation fidelity constant, as compared to the conventional CP mode. Conclusion A new pTx pulse design formalism is introduced targeting slice-specific B1+ homogenization in MB excitation while constraining total RF power. These pulses lead to significantly improved slice-wise B1+ uniformity and/or largely reduced total RF power, as compared to the conventionally employed MB pulses applied in the CP mode.
机译:目的开发一种用于并行多频带(MB)激励的新型并行发射(pTx)脉冲设计,以便同时解决发射B1(B1 +)不均匀性和总射频(RF)功率的问题,以便在出现最佳射频激励时使用MB脉冲对高场和超高场MRI进行切片加速。方法采用所提出的方法,每个同时被激发的频带都受一组特定于频带的B1复合匀场权重的约束。使用16通道pTx系统在7T人脑中对该方法进行了验证,并将其与以圆极化(CP)模式操作的常规MB脉冲进行了比较。基于测得的B1图进行了进一步的数值模拟。结果与传统的CP模式相比,新方法在保持总RF功率恒定的情况下将B1 +均匀性提高了60%,而在保持激发保真度恒定的情况下将总RF功率降低了72%。结论引入了一种新的pTx脉冲设计形式,针对MB激发中的特定于切片的B1 +均质化,同时限制了总RF功率。与在CP模式下应用的常规MB脉冲相比,这些脉冲可显着改善逐层B1 +均匀性和/或大大降低总RF功率。

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