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Theoretical studies of the effect of dipolar field in multiple spin-echo sequence with refocusing pulses of finite duration

机译:具有有限持续时间的重聚焦脉冲的多重自旋回波序列中偶极场效应的理论研究

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摘要

It has been observed recently that the finite duration of refocusing rf pulses in a multiecho acquisition of the signal formed under the influence of dipolar field leads to significant signal attenuation [S. Kennedy et al., Proc. Intl. Soc. Mag. Reson. Med. >13, 2288 (2005)]. Hereto we quantify the phenomenon by evaluating analytically the influences of both the distant dipolar field (DDF) and transverse relaxation T2 on the magnetization in a multiecho pulse sequence based on Correlation Spectroscopy Revamped by Asymmetric z-gradient Echo Detection (CRAZED). Analytic expressions for the magnetization were obtained, which demonstrate explicitly the origin of rephased signal in the presence of the finite π pulses in the multiecho train. The expressions also explain the effects of DDF and T2 during the refocusing pulses on the signal strength, and show the substantial signal dependence on the phase of the rf pulses. We show that when the DDF effect during the pulse is canceled, the signal rises primarily during the free evolution time in the acquisition period. This elucidates the signal attenuation when the rf pulses expand a significant proportion of time in the sequence. In addition, we performed an optimization on the number of refocusing pulses that maximizes the total acquired signal using parameters for water, brain white matter and muscle. We found that maximal signal-to-noise ratio is obtained when the pulse duration approximately equals the free evolution time in the samples with a wide range of T2.
机译:最近已经观察到,在双极场影响下形成的信号的多回波采集中,重新聚焦rf脉冲的有限持续时间会导致明显的信号衰减[S.肯尼迪(Kennedy)等人(美国),国际Soc。魔术师雷森中> 13 ,第2288页(2005年)]。在此,我们通过分析不对称z梯度回波检测(CRAZED)改进的相关光谱,通过分析评估远距偶极场(DDF)和横向弛豫T2对多回波脉冲序列中磁化强度的影响来量化该现象。获得了磁化强度的解析表达式,这些表达式明确表明了在多回波序列中存在有限π脉冲的情况下,重定相信号的起源。这些表达式还解释了重聚焦脉冲期间DDF和T2对信号强度的影响,并显示了信号对rf脉冲相位的实质依赖性。我们表明,当脉冲期间的DDF效应消除时,信号主要在采集周期的自由演化时间内上升。当射频脉冲在序列中扩展了很大一部分时间时,这说明了信号衰减。此外,我们对重聚焦脉冲的数量进行了优化,使用水,脑白质和肌肉的参数使总采集信号最大化。我们发现,当脉冲持续时间大约等于宽范围T2的样本中的自由演化时间时,可以获得最大的信噪比。

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