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用于超极化核磁共振和磁共振成像多扫描采集的最佳脉冲翻转角

Optimum pulse flip angles for multi-scan acquisition of hyperpolarized NMR and MRI.

作者信息

Nagashima Kaz

机构信息

Tokyo Magnetic Resonance, Inc., 31 Daikyo-cho, Shinjuku City, Tokyo, Japan.

出版信息

J Magn Reson. 2008 Feb;190(2):183-8. doi: 10.1016/j.jmr.2007.10.011. Epub 2007 Oct 30.

DOI:10.1016/j.jmr.2007.10.011
PMID:18023219
Abstract

The optimum pulse flip angles were calculated for multi-scan acquisition of hyperpolarized NMR and MRI. The derived formulae could be correlated with the best angle for ordinary steady-state acquisition, the so-called Ernst angle. Although single-scan acquisition has been popular in hyperpolarized measurements, signal accumulation by increasing scans may become very effective for improving the total signal gain, especially when the sample's longitudinal spin relaxation time is long. The optimum angles were calculated from theoretical relations between the exponential of the pulse repetition time/relaxation time ratio and the total scan counts. Constant and variable flip angle cases are presented, both of which yield similar cumulative signal amplitudes. For the constant angle case, a numerically calculated semi-universal curve is presented for the rough estimation of the best angle, as the results were not significantly dependent upon the degree of hyperpolarization within the realistic range. Meanwhile, for the variable angle case, the best angles were approximated from a clean trigonometric series relation, in which the initial pulse became near the Ernst angle and the last pulse was always 90 degrees . A modification of the variable angle scheme enables the acquisition of uniform signal amplitude throughout all scans.

摘要

计算了用于超极化核磁共振(NMR)和磁共振成像(MRI)多扫描采集的最佳脉冲翻转角。推导的公式可以与普通稳态采集的最佳角度(即所谓的恩斯特角)相关联。尽管单扫描采集在超极化测量中很常见,但通过增加扫描次数来积累信号对于提高总信号增益可能非常有效,特别是当样品的纵向自旋弛豫时间较长时。最佳角度是根据脉冲重复时间与弛豫时间之比的指数与总扫描次数之间的理论关系计算得出的。给出了恒定翻转角和可变翻转角的情况,两者产生的累积信号幅度相似。对于恒定角情况,给出了一条数值计算的半通用曲线,用于粗略估计最佳角度,因为在实际范围内结果并不显著依赖于超极化程度。同时,对于可变角情况,最佳角度由一个简洁的三角级数关系近似得出,其中初始脉冲接近恩斯特角,最后一个脉冲始终为90度。对可变角方案的修改能够在所有扫描中获得均匀的信号幅度。

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