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针对 7T 人体心脏的均匀 3D 激发的定制化和通用的并行发射宽带脉冲。

Tailored and universal parallel transmit broadband pulses for homogeneous 3D excitation of the human heart at 7T.

机构信息

Physikalisch-Technische Bundesanstalt (PTB), Braunschweig and Berlin, Germany.

University of Minnesota, Center for Magnetic Resonance Research, Minneapolis, Minnesota, USA.

出版信息

Magn Reson Med. 2024 Aug;92(2):730-740. doi: 10.1002/mrm.30072. Epub 2024 Mar 5.

Abstract

PURPOSE

To research and evaluate the performance of broadband tailored kT-point pulses (TP) and universal pulses (UP) for homogeneous excitation of the human heart at 7T.

METHODS

Relative 3D -maps of the thorax were acquired from 29 healthy volunteers. TP and UP were designed using the small-tip-angle approximation for a different composition of up to seven resonance frequencies. TP were computed for each of the 29 -maps, and UPs were calculated using 22 -maps and tested in seven testcases. The performance of the pulses was analyzed using the coefficient of variation (CV) in the 3D heart volumes. The 3D gradient-echo (GRE) scans were acquired for the seven testcases to qualitatively validate the -predictions.

RESULTS

Single- and double-frequency optimized pulses achieved homogeneity in flip angle (FA) for the frequencies they were optimized for, while the broadband pulses achieved uniformity in FA across a 1300 Hz frequency range.

CONCLUSION

Broadband TP and UP can be used for homogeneous excitation of the heart volume across a 1300 Hz frequency range, including the water and the main six fat peaks, or with longer pulse durations and higher FAs for a smaller transmit bandwidth. Moreover, despite large inter-volunteer variations, broadband UP can be used for calibration-free 3D heart FA homogenization in time-critical situations.

摘要

目的

研究和评估宽带调谐 kT 点脉冲(TP)和通用脉冲(UP)在 7T 下对人体心脏均匀激发的性能。

方法

从 29 名健康志愿者中获得胸部的相对 3D 图谱。使用小角度近似法设计了具有多达七种不同共振频率组成的 TP 和 UP。为每个 29 个图谱计算了 TP,并使用 22 个图谱计算了 UP,并在七个测试案例中进行了测试。使用 3D 心脏体积的变异系数(CV)分析了脉冲的性能。为七个测试案例采集了 3D 梯度回波(GRE)扫描,以定性验证 - 预测。

结果

单频和双频优化脉冲在其优化的频率下实现了翻转角(FA)的均匀性,而宽带脉冲在 1300 Hz 的频率范围内实现了 FA 的均匀性。

结论

宽带 TP 和 UP 可用于在 1300 Hz 的频率范围内均匀激发心脏体积,包括水和主要的六个脂肪峰,或使用更长的脉冲持续时间和更高的 FA 来获得更小的发射带宽。此外,尽管志愿者之间存在很大的个体差异,但宽带 UP 可用于在时间关键情况下进行无校准的 3D 心脏 FA 均匀化。

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