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带有有限射频激励的平衡稳态自由进动的解析描述。

An analytical description of balanced steady-state free precession with finite radio-frequency excitation.

机构信息

Division of Radiological Physics, Department of Medical Radiology, University of Basel Hospital, Basel, Switzerland.

出版信息

Magn Reson Med. 2011 Feb;65(2):422-31. doi: 10.1002/mrm.22626. Epub 2010 Sep 21.

Abstract

Conceptually, the only flaw in the standard steady-state free precession theory is the assumption of quasi-instantaneous radio-frequency pulses, and 10-20% signal deviations from theory are observed for common balanced steady-state free precession protocols. This discrepancy in the steady-state signal can be resolved by a simple T(2) substitution taking into account reduced transverse relaxation effects during finite radio-frequency excitation. However, finite radio-frequency effects may also affect the transient phase of balanced steady-state free precession, its contrast or its spin-echo nature and thereby have an adverse effect on common steady-state free precession magnetization preparation methods. As a result, an in-depth understanding of finite radio-frequency effects is not only of fundamental theoretical interest but also has direct practical implications. In this article, an analytical solution for balanced steady-state free precession with finite radio-frequency pulses is derived for the transient phase (under ideal conditions) and in the steady state demonstrating that balanced steady-state free precession key features are preserved but revealing an unexpected dependency of finite radio-frequency effects on relaxation times for the transient decay. Finally, the mathematical framework reveals that finite radio-frequency theory can be understood as a generalization of alternating repetition time and fluctuating equilibrium steady-state free precession sequence schemes.

摘要

从概念上讲,标准稳态自由进动理论唯一的缺陷是假设准瞬时射频脉冲,并且对于常见的平衡稳态自由进动协议,观察到 10-20%的信号偏离理论。通过考虑有限射频激发期间横向弛豫效应的降低,对稳态信号进行简单的 T2 替换可以解决这种稳态信号的差异。然而,有限射频效应也可能影响平衡稳态自由进动的瞬态相位、其对比度或其自旋回波性质,从而对常见的稳态自由进动磁化准备方法产生不利影响。因此,深入了解有限射频效应不仅具有基本的理论意义,而且具有直接的实际意义。在本文中,针对有限射频脉冲的平衡稳态自由进动的瞬态相位(在理想条件下)和稳态推导了一个解析解,证明了平衡稳态自由进动的关键特征得以保留,但揭示了有限射频效应对瞬态衰减的弛豫时间的意外依赖性。最后,数学框架表明,有限射频理论可以理解为交替重复时间和波动平衡稳态自由进动序列方案的推广。

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