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首页> 外文期刊>Magnetic resonance in medical sciences: MRMS : an official journal of Japan Society of Magnetic Resonance in Medicine >Hyperpolarized 129Xe MR imaging with balanced steady-state free precession in spontaneously breathing mouse lungs.
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Hyperpolarized 129Xe MR imaging with balanced steady-state free precession in spontaneously breathing mouse lungs.

机译:超极化129Xe MR成像,自发呼吸的小鼠肺中具有稳定的稳态自由进动。

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PURPOSE: We investigated the characteristics of hyperpolarized (HP) (129)Xe magnetic resonance (MR) imaging obtained from balanced steady-state free precession (SSFP) measurement of mouse lungs, especially under spontaneous breathing, and compared the results with those obtained using traditional spoiled gradient echo (SPGR) method, focusing on improved signal-to-noise ratio (SNR) and reduced total acquisition time. METHODS: We calculated magnetization response of the HP (129)Xe gas for the balanced SSFP sequence under spontaneous breathing to derive optimal conditions for the imaging experiment. We then placed an anesthetized mouse in the magnet (9.4T) supplied with oxygen gas and a mixture of HP (129)Xe gas supplied from a continuous-flow hyperpolarizing system. We obtained an axial plane image of the lung through balanced SSFP and SPGR sequences, changing the various magnetic resonance (MR) imaging parameters, and measured the SNR of these images. RESULTS: We demonstrated the clear dependence of image intensity on flip angle and number of shots. The SNR was higher in balanced SSFP than in SPGR and 2.3-fold higher compared at each maximum. In contrast, total acquisition time in balanced SSFP was shortened to about one-eighth that of SPGR using a one-shot acquisition mode. CONCLUSION: In HP (129)Xe MR imaging of the lung of a spontaneously breathing mouse, balanced SSFP sequence with multi-shot and centric order acquisition provides higher SNR in a shorter acquisition time than SPGR.
机译:目的:我们研究了通过平衡的稳态自由进动(SSFP)测量小鼠肺部,特别是在自发呼吸下获得的超极化(HP)(129)Xe磁共振(MR)成像的特征,并将结果与​​使用传统的变差梯度回波(SPGR)方法,着重于提高信噪比(SNR)和减少总采集时间。方法:我们计算了自发呼吸下平衡SSFP序列的HP(129)Xe气体的磁化响应,从而得出了成像实验的最佳条件。然后,我们将麻醉的老鼠放在由氧气(9.4T)供应的磁铁和由连续流超极化系统供应的HP(129)Xe气体的混合物中。我们通过平衡的SSFP和SPGR序列获得了肺的轴向平面图像,更改了各种磁共振(MR)成像参数,并测量了这些图像的SNR。结果:我们证明了图像强度对翻转角和拍摄数量的明显依赖性。平衡SSFP中的SNR高于SPGR中的SNR,比每个最大值高2.3倍。相比之下,使用单次采集模式,平衡SSFP中的总采集时间缩短到SPGR的八分之一左右。结论:在自发呼吸的小鼠的肺部HP(129)Xe MR成像中,具有多次发射和中心点采集的平衡SSFP序列可在比SPGR短的采集时间内提供更高的SNR。

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