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首页> 外文期刊>Journal of magnetic resonance >Direct optimization of signal-to-noise ratio of CPMG-like sequences in inhomogeneous fields
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Direct optimization of signal-to-noise ratio of CPMG-like sequences in inhomogeneous fields

机译:非均匀场中类CPMG序列的信噪比直接优化

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The performance of the standard CPMG sequence in inhomogeneous fields can be improved with the use of broadband excitation and refocusing pulses. In previous work we have developed short composite broadband refocusing pulses together with practical excitation pulses to realize such performance gains, and quantified them using the ratio of signal to noise power (SNR). In this work we systematically explore the performance of refocusing pulses as a function of the overall pulse length up to ten times the length of the regular 1800 pulse. This is in the regime of non-adiabatic pulses. We introduce a new performance functional for numerical pulse optimization that directly maximizes SNR and study the effect of symmetry constraints on the pulses. We find that for the optimal pulses, the SNR per asymptotic echo increases with pulse length but, for typical echo spacings, the SNR per unit time is maximized for refocusing pulses that are between two and four times longer than the duration of the standard rectangular 180 pulse. The performance is limited by the control bandwidth and the inability of finding the global maximum. The best performance was obtained with symmetric phase-alternating (SPA) refocusing pulses optimized with our novel performance functional. To test them in the CPMG sequence, we also developed axis-matching excitation (AMEX) pulses for use with these SPA refocusing pulses and tested the new AMEX-SPA sequences experimentally in a grossly inhomogeneous field, observing excellent agreement with the theoretical expectations. One of these sequences produced over 4.5 times higher SNR per asymptotic echo and 3.9 times higher SNR per unit time than the standard CPMG sequence with the same instantaneous RF power level. We also found that the new sequences are at least as robust to changes in the RF field strength as the standard CPMG sequence. (C) 2014 Elsevier Inc. All rights reserved.
机译:通过使用宽带激发和重新聚焦脉冲,可以改善标准CPMG序列在非均匀场中的性能。在先前的工作中,我们开发了短的复合宽带重聚焦脉冲以及实际的激励脉冲来实现这种性能增益,并使用信噪比(SNR)对其进行了量化。在这项工作中,我们系统地研究了重新聚焦脉冲的性能,它是总脉冲长度的函数,而脉冲总长度最多是常规1800脉冲长度的十倍。这是在非绝热脉冲的情况下。我们为数字脉冲优化引入了一种新的性能函数,该函数直接使SNR最大,并研究了对称约束对脉冲的影响。我们发现,对于最佳脉冲,每个渐近回波的SNR随脉冲长度而增加,但是对于典型回波间隔,对于重新聚焦的脉冲,其单位时间的SNR最大化,该时间比标准矩形180的持续时间长两到四倍脉冲。性能受到控制带宽和无法找到全局最大值的限制。使用对称相位交替(SPA)重聚焦脉冲获得了最佳性能,该脉冲利用我们的新型性能功能进行了优化。为了在CPMG序列中对其进行测试,我们还开发了与这些SPA重聚焦脉冲一起使用的轴匹配激励(AMEX)脉冲,并在完全不均匀的场中对新的AMEX-SPA序列进行了实验测试,观察结果与理论预期相符。这些序列之一在相同的瞬时RF功率水平下,与标准CPMG序列相比,每渐近回波的SNR高4.5倍,每单位时间的SNR高3.9倍。我们还发现,新序列对RF场强的变化至少与标准CPMG序列一样健壮。 (C)2014 Elsevier Inc.保留所有权利。

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