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Rotation operator propagators for time-varying radiofrequency pulses in NMR spectroscopy: Applications to shaped pulses and pulse trains

机译:核磁共振波谱中随时间变化的射频脉冲的旋转算子传播器:在成形脉冲和脉冲序列上的应用

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摘要

The propagator for trains of radiofrequency pulses can be directly integrated numerically or approximated by average Hamiltonian approaches. The former provides high accuracy and the latter, in favorable cases, convenient analytical formula. The Euler-angle rotation operator factorization of the propagator provides insights into performance that are not as easily discerned from either of these conventional techniques. This approach is useful in determining whether a shaped pulse can be represented over some bandwidth by a sequence tau(1)-R-phi(beta)-tau(2), in which R-phi(beta) is a rotation by an angle beta around an axis with phase 0 in the transverse plane and tau(1) and tau(2) are time delays, allowing phase evolution during the pulse to be compensated by adjusting time periods prior or subsequent to the pulse. Perturbation theory establishes explicit formulas for tau(1) and tau(2) as proportional to the average transverse magnetization generated during the shaped pulse. The Euler-angle representation of the propagator also is useful in iterative reduction of pulse-interrupted-free precession schemes. Application to Carr-Purcell-Meiboom-Gill sequences identifies an eight-pulse phase alternating scheme that generates a propagator nearly equal to the identity operator. (C) 2014 Elsevier Inc. All rights reserved.
机译:射频脉冲序列的传播器可以直接进行数值积分,也可以通过平均哈密顿方法近似。前者提供了高精度,而后者在有利的情况下提供了方便的分析公式。传播子的Euler角旋转算子分解提供了对性能的洞察力,而这两种传统技术都不易分辨。此方法可用于确定是否可以通过序列tau(1)-R-phiβ-tau(2)在某个带宽上表示整形脉冲,其中R-phiβ是一个角度旋转β绕轴在横向平面上具有相位0的轴以及tau(1)和tau(2)是时间延迟,从而允许通过调整脉冲之前或之后的时间段来补偿脉冲期间的相位演化。摄动理论建立了tau(1)和tau(2)的显式公式,该公式与整形脉冲期间产生的平均横向磁化强度成比例。传播子的欧拉角表示形式也可用于迭代减少无脉冲中断的进动方案。在Carr-Purcell-Meiboom-Gill序列上的应用确定了八脉冲相位交替方案,该方案生成了几乎等同于身份算子的传播子。 (C)2014 Elsevier Inc.保留所有权利。

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