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宽带 CPMG 序列,采用短复合聚焦脉冲。

Broadband CPMG sequence with short composite refocusing pulses.

机构信息

School of Engineering and Applied Sciences, Harvard University, 33 Oxford Street, Cambridge, MA 02138, United States.

出版信息

J Magn Reson. 2013 May;230:64-75. doi: 10.1016/j.jmr.2013.01.006. Epub 2013 Feb 4.

Abstract

We demonstrate that CPMG sequences with phase-modulated refocusing pulses of the same duration as the standard 180° pulses can generate echo trains with significantly increased amplitudes compared to the standard CPMG sequence in the case when there is a large range of Larmor frequencies across the sample. The best performance is achieved with symmetric phase-alternating (SPA) composite refocusing pulses of the form α-yβ+yα-y. In comparison to standard 180° pulses, we show that with SPA refocusing pulses with α≈27° and β≈126°, it is possible to double the signal-to-noise ratio without increasing the total pulse duration or power consumption of the refocusing pulses. The increased bandwidth of these pulses more than compensates for the decrease in performance in the vicinity of resonance. To achieve the full benefit of the broadband nature of the SPA pulses in a CPMG sequence, it is necessary to combine these refocusing pulses with a broadband excitation pulse. When it is not possible to use a short, high amplitude excitation pulse, we show that phase-alternating (PA) excitation pulses are suitable for this purpose. We present a detailed analysis of the underlying spin dynamics of these new pulse sequences and confirm the simulations with experiments. We show that for samples with T1/T2>1, the new sequences in grossly inhomogeneous fields do not only generate echoes with an increased amplitude, but also with an increased decay time. Finally, we analyze the diffusion properties and show quantitatively that the broadband sequences have a substantially higher diffusion sensitivity compared with the standard CPMG sequence.

摘要

我们证明,当样品中的拉莫尔频率范围较大时,与标准 180°脉冲具有相同时长的相调制聚焦脉冲的 CPMG 序列可以比标准 CPMG 序列产生具有显著更高幅度的回波串。在对称相交替(SPA)复合聚焦脉冲的情况下可以获得最佳性能,其形式为α-yβ+yα-y。与标准 180°脉冲相比,我们表明,使用 SPA 聚焦脉冲,当α≈27°且β≈126°时,可以在不增加聚焦脉冲总持续时间或功率消耗的情况下将信噪比提高一倍。这些脉冲的带宽增加足以弥补在共振附近性能下降的影响。为了在 CPMG 序列中充分利用 SPA 脉冲的宽带特性,有必要将这些聚焦脉冲与宽带激励脉冲相结合。当不可能使用短而高幅度的激励脉冲时,我们表明相交替(PA)激励脉冲适用于此目的。我们对这些新脉冲序列的基本自旋动力学进行了详细分析,并通过实验进行了验证。我们表明,对于 T1/T2>1 的样品,在严重不均匀场中的新序列不仅会产生幅度增加的回波,而且还会产生衰减时间增加的回波。最后,我们分析了扩散性质,并定量表明宽带序列与标准 CPMG 序列相比具有更高的扩散灵敏度。

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