论文标题

并行发射脉冲设计,用于饱和均匀性(推),用于7T处的磁化转移成像

Parallel transmit PUlse design for Saturation Homogeneity (PUSH) for Magnetization Transfer imaging at 7T

论文作者

Leitão, David, Tomi-Tricot, Raphael, Bridgen, Pip, Wilkinson, Tom, Liebig, Patrick, Gumbrecht, Rene, Ritter, Dieter, Giles, Sharon L., Baburamani, Ana, Sedlacik, Jan, Hajnal, Joseph V., Malik, Shaihan J.

论文摘要

目的:这项工作提出了一种新型的RF脉冲设计(PTX)系统,以获得在存在传输场($ B_1^+$)不均匀性的情况下,获得半固体磁化的均匀饱和(以磁化转移(MT)对比度)。半固体磁化通常被建模为纯纵向,并使用$ b_1^+$场饱和但不旋转其磁化,因此不适用标准的PTX脉冲设计方法。理论与方法:饱和均匀性的脉冲设计(PUSH)通过考虑均方根的均匀性$ b_1^+$,$ b_1^{rms} $来优化PTX RF脉冲,这与半呈饱和度有关。在这里,我们考虑了由在单个2D平面或3D上优化的少数空间非选择性子脉冲组成的设计。进行了5个受试者的7T Terra系统上的模拟和体内实验,以研究$ b_1^{rms} $的均质化以及通过获得MT比率图的MT对比度的均质化。结果:与2D和3D优化的圆极化(CP)模式相比,仿真和体内实验的均匀$ B_1^{RMS} $的均匀$ B_1^{RMS} $的6和2倍。对于所有受试者而言,这始终如一地翻译成4和1.25倍的MT对比度,其中2个亚脉冲足以实现和使用线圈。结论:拟议的推送方法比CP模式在同一SAR预算中获得更均匀和更高的MT对比度。

Purpose: This work proposes a novel RF pulse design for parallel transmit (pTx) systems to obtain uniform saturation of semisolid magnetization for Magnetization Transfer (MT) contrast in the presence of transmit field ($B_1^+$) inhomogeneities. The semisolid magnetization is usually modeled as being purely longitudinal, with the applied $B_1^+$ field saturating but not rotating its magnetization, thus standard pTx pulse design methods do not apply. Theory and Methods: Pulse design for Saturation Homogeneity (PUSH) optimizes pTx RF pulses by considering uniformity of root-mean squared $B_1^+$, $B_1^{rms}$, which relates to the rate of semisolid saturation. Here we considered designs consisting of a small number of spatially non-selective sub-pulses optimized over either a single 2D plane or 3D. Simulations and in vivo experiments on a 7T Terra system with an 8-TX Nova head coil in 5 subjects were carried out to study the homogenization of $B_1^{rms}$ and of the MT contrast by acquiring MT ratio maps. Results: Simulations and in vivo experiments showed up to 6 and 2 times more uniform $B_1^{rms}$ compared to circular polarized (CP) mode for 2D and 3D optimizations, respectively. This translated into 4 and 1.25 times more uniform MT contrast, consistently for all subjects, where 2 sub-pulses were enough for the implementation and coil used. Conclusion: The proposed PUSH method obtains more uniform and higher MT contrast than CP mode within the same SAR budget.

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