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使用快速自旋回波技术进行定量活体 T2 映射 - 一种线性校正程序。

Quantitative in vivo T2 mapping using fast spin echo techniques - A linear correction procedure.

机构信息

Brain Imaging Center (BIC), Goethe University Frankfurt, Schleusenweg 2-16, D-60528 Frankfurt am Main, Germany.

Brain Imaging Center (BIC), Goethe University Frankfurt, Schleusenweg 2-16, D-60528 Frankfurt am Main, Germany.

出版信息

Neuroimage. 2017 Aug 15;157:476-485. doi: 10.1016/j.neuroimage.2017.06.017. Epub 2017 Jun 9.

Abstract

A method is presented for correcting the effects of stimulated and indirect echoes on quantitative T2 mapping data acquired with multiple spin echo techniques, such as turbo spin echo. In contrast to similar correction techniques proposed in the literature, the method does not require a priori knowledge of the radio frequency (RF) pulse profiles. In a first step, for the T2 mapping protocol under investigation, signal decay curves S(TE) are simulated for a range of different RF pulse profiles. The actual signal decay S(TE) is then measured on a phantom with known T2, so the approximate RF pulse profiles can be derived via comparison with the simulated decay curves. In a second step, with the RF pulses obtained from step one, signal decay curves S(TE) are simulated for different T2 values and fitted mono-exponentially, thus allowing to deduce the relationship between true T2 and the apparent T2 (T2app) values. Results show that this relationship is approximately linear, allowing for a direct correction of T2app maps. If the amplitude of the transmitted RF field (B1) does not exceed the nominal value by more than 10%, it is shown that a B1-independent correction of T2app maps yields sufficiently accurate results for T2. A B1-dependent version is also presented. The method is tested in vitro on a phantom with different T2 values and in vivo on healthy subjects.

摘要

本文提出了一种方法,用于校正采用多回波技术(如涡轮自旋回波)采集的定量 T2 映射数据中受激发射和间接回波的影响。与文献中提出的类似校正技术不同,该方法不需要预先了解射频(RF)脉冲轮廓。在第一步中,针对所研究的 T2 映射协议,针对不同的 RF 脉冲轮廓模拟信号衰减曲线 S(TE)。然后在具有已知 T2 的体模上测量实际信号衰减 S(TE),以便通过与模拟衰减曲线的比较来推导出近似的 RF 脉冲轮廓。在第二步中,使用从第一步获得的 RF 脉冲,针对不同的 T2 值模拟信号衰减曲线 S(TE),并进行单指数拟合,从而可以推导出真实 T2 和表观 T2(T2app)值之间的关系。结果表明,这种关系近似线性,允许直接校正 T2app 图。如果发射 RF 场(B1)的幅度不超过标称值的 10%,则表明对于 T2,B1 独立校正 T2app 图可以产生足够准确的结果。还提出了一种 B1 相关的版本。该方法在具有不同 T2 值的体模上进行了体外测试,并在健康受试者上进行了体内测试。

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