论文标题

在存在强,金属衍生的不均匀性的情况下,提高MRI的切片选择性

Improving MRI's slice selectivity in the presence of strong, metal-derived inhomogeneities

论文作者

Farkash, Gil, Liberman, Gilad, Martinho, Ricardo P., Frydman, Lucio

论文摘要

目的:开发这些方案,这些方案在非磁性金属植入物引起的那种田野异质性附近提供忠实的2D切片,并减少了伪影和较短的扫描时间。 方法:一种依靠跨期间时空编码(XSPEN)的激发方案用作开发新的不均匀性,切片选择性脉冲方案的基础。由此产生的完全重新聚焦的跨期时空编码(聚焦 - Xspen)涉及四个绝热扫描。使用小鼠模型在计算机,体外和体内评估该方法,并根据常规和扫描的RF脉冲与许多现有和新型替代方法进行了比较,包括基于激光选择性空间选择性的类似方法。 结果:计算和实验证实,Xspen和激光器的多扫描衍生物可以提供局部激发曲线,以预期位置为中心,并具有增强对B0和B1扭曲的免疫力。然而,这是以比非扫射对应物更高的代价来实现的。此外,单次聚焦 - XSPEN和激光轮廓涵盖了有限的非谐波范围。这可以扩展到涵盖具有均匀切片宽度的任意异质值的频段,通过在具有合适的传输和接收偏移的多个扫描上循环实验。 结论:引入了一系列新型方法,以在金属附近选择切片,从而针对BO和B1+场不均匀性提供了稳健性。

Purpose: To develop schemes that deliver faithful 2D slices near field heterogeneities of the kind arising from non-ferromagnetic metal implants, with reduced artifacts and shorter scan times. Methods: An excitation scheme relying on cross-term spatio-temporal encoding (xSPEN) was used as basis for developing the new inhomogeneity-insensitive, slice-selective pulse scheme. The resulting Fully refOCUSED cross-term SPatiotemporal ENcoding (FOCUSED-xSPEN) approach involved four adiabatic sweeps. The method was evaluated in silico, in vitro and in vivo using mice models, and compared against a number of existing and of novel alternatives based on both conventional and swept RF pulses, including an analogous method based on LASER's selectivity spatial selectivity. Results: Calculations and experiments confirmed that multi-sweep derivatives of xSPEN and LASER can deliver localized excitation profiles, centered at the intended positions and endowed with enhanced immunity to B0 and B1 distortions. This, however, is achieved at the expense of higher SAR than non-swept counterparts. Furthermore, single-shot FOCUSED-xSPEN and LASER profiles covered limited off-resonance ranges. This could be extended to bands covering arbitrary off-resonance values with uniform slice widths, by looping the experiments over a number of scans possessing suitable transmission and reception offsets. Conclusions: A series of novel approaches were introduced to select slices near metals, delivering robustness against Bo and B1+ field inhomogeneities.

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