...
首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Slice-selective RF pulses for in vivo B1+ inhomogeneity mitigation at 7 tesla using parallel RF excitation with a 16-element coil.
【24h】

Slice-selective RF pulses for in vivo B1+ inhomogeneity mitigation at 7 tesla using parallel RF excitation with a 16-element coil.

机译:使用带有16个元素的线圈的并行RF激励在7 tesla减轻体内B1 +不均匀性的切片选择RF脉冲。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Slice-selective RF waveforms that mitigate severe B1+ inhomogeneity at 7 Tesla using parallel excitation were designed and validated in a water phantom and human studies on six subjects using a 16-element degenerate stripline array coil driven with a butler matrix to utilize the eight most favorable birdcage modes. The parallel RF waveform design applied magnitude least-squares (MLS) criteria with an optimized k-space excitation trajectory to significantly improve profile uniformity compared to conventional least-squares (LS) designs. Parallel excitation RF pulses designed to excite a uniform in-plane flip angle (FA) with slice selection in the z-direction were demonstrated and compared with conventional sinc-pulse excitation and RF shimming. In all cases, the parallel RF excitation significantly mitigated the effects of inhomogeneous B1+ on the excitation FA. The optimized parallel RF pulses for human B1+ mitigation were only 67% longer than a conventional sinc-based excitation, but significantly outperformed RF shimming. For example the standard deviations (SDs) of the in-plane FA (averaged over six human studies) were 16.7% for conventional sinc excitation, 13.3% for RF shimming, and 7.6% for parallel excitation. This work demonstrates that excitations with parallel RF systems can provide slice selection with spatially uniform FAs at high field strengths with only a small pulse-duration penalty.
机译:在水幻影中设计并验证了使用平行激励缓解7 Tesla严重B1 +严重不均匀性的切片选择RF波形,并在人体研究中对六个对象进行了验证,使用由巴特勒矩阵驱动的16元素退化带状线阵列线圈来利用八个最有利鸟笼模式。与传统的最小二乘法(LS)设计相比,并行RF波形设计应用了幅度最小二乘(MLS)标准和优化的k空间激励轨迹,以显着提高轮廓均匀性。演示了平行激发RF脉冲,该脉冲设计为在z方向选择切片时激发均匀的平面内翻转角(FA),并将其与常规的正弦脉冲激发和RF匀场进行了比较。在所有情况下,并行RF激励都显着减轻了不均匀B1 +对激励FA的影响。用于减轻人类B1 +的最佳并行RF脉冲仅比传统的基于Sinc的激励长67%,但明显优于RF匀场。例如,平面内FA的标准偏差(SD)(在六项人体研究中平均得出)对于常规的正弦激励为16.7%,对于射频匀场为13.3%,对于平行激励为7.6%。这项工作表明,使用并行RF系统进行激励可以在高场强下以较小的脉冲持续时间代价提供具有空间均匀FA的切片选择。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号