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具有不对称性的混合绝热脉冲(HAPY):一种不对称绝热脉冲及其在7T脉冲动脉自旋标记中的应用。

Hybrid adiabatic pulse with asymmetry (HAPY): An asymmetric adiabatic pulse with an application in pulsed arterial spin labeling at 7T.

作者信息

Chi Didi, Blunck Yasmin, Glarin Rebecca, Davey Catherine E, Zhang Xianyi, Stäb Daniel, Pfeuffer Josef, Johnston Leigh A, Jin Jin

机构信息

Melbourne Brain Centre Imaging Unit, University of Melbourne, Parkville, Victoria, Australia.

Department of Biomedical Engineering, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Magn Reson Med. 2023 Jul;90(1):177-193. doi: 10.1002/mrm.29640. Epub 2023 Mar 24.

Abstract

PURPOSE

A new class of asymmetric adiabatic radiofrequency (RF) pulses, Hybrid Adiabatic Pulse with asYmmetry (HAPY), is designed to be used as the labeling pulse for Pulsed Arterial Spin labeling (PASL) at 7T to reduce overall specific absorption rate (SAR) while maintaining high labeling efficiency with and inhomogeneities.

METHODS

Realistic and distributions were extracted from multiple in vivo scans. The proposed class of asymmetric pulses was parameterized and optimized considering these conditions. Simulation and phantoms experiments were performed to compare the optimized pulses with HS-3, GOIA, and trFOCI pulses. In vivo experiments were conducted to demonstrate the application of HAPY in PICORE PASL at 7T, compared with the GOIA and trFOCI pulses.

RESULTS

HAPYs with different amounts of pulse energy reduction are obtained by the proposed optimization framework. Both simulation and phantom experiments demonstrate that HAPY achieves high labeling efficiency and high selectivity along the critical side despite off-resonance and low amplitude. In vivo experiments reveal that HAPY is able to generate robust perfusion signal with less overall SAR or shorter pulse repetition time, compared to the GOIA and trFOCI pulses.

CONCLUSION

The HAPY class of pulses, obtained via systematic optimization tailored to the application of PASL at 7T, reduces power deposition without affecting labeling efficiency, which provides a prospect of further exploiting the benefits of ultra-high field in ASL.

摘要

目的

设计了一类新型的非对称绝热射频(RF)脉冲,即具有不对称性的混合绝热脉冲(HAPY),用作7T场强下脉冲动脉自旋标记(PASL)的标记脉冲,以降低总体比吸收率(SAR),同时在存在B₀和B₁不均匀性的情况下保持高标记效率。

方法

从多次体内扫描中提取实际的B₀和B₁分布。考虑这些条件对所提出的非对称脉冲类别进行参数化和优化。进行模拟和体模实验,将优化后的脉冲与HS-3、GOIA和trFOCI脉冲进行比较。进行体内实验,以证明HAPY在7T场强下PICORE PASL中的应用,并与GOIA和trFOCI脉冲进行比较。

结果

通过所提出的优化框架获得了具有不同程度脉冲能量降低的HAPY。模拟和体模实验均表明,尽管存在B₀失谐和低B₁幅度,HAPY仍能在关键侧实现高标记效率和高选择性。体内实验表明,与GOIA和trFOCI脉冲相比,HAPY能够以更低的总体SAR或更短的脉冲重复时间产生稳健的灌注信号。

结论

通过针对7T场强下PASL应用进行系统优化而获得的HAPY类脉冲,在不影响标记效率的情况下降低了功率沉积,这为进一步利用超高场在动脉自旋标记(ASL)中的优势提供了前景。

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