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超极化3He的稳态自由进动:实验与理论

Steady-state free precession with hyperpolarized 3He: experiments and theory.

作者信息

Wild Jim M, Teh Kevin, Woodhouse Neil, Paley Martyn N J, Fichele Stan, de Zanche Nicola, Kasuboski Larry

机构信息

Unit of Academic Radiology, University of Sheffield, C floor, Royal Hallamshire Hospital, Glossop Road, S10 2JF, UK.

出版信息

J Magn Reson. 2006 Nov;183(1):13-24. doi: 10.1016/j.jmr.2006.07.015. Epub 2006 Aug 4.

Abstract

The magnetization response of hyperpolarized 3He gas to a steady-state free precession (SSFP) sequence was simulated using matrix product operators. The simulations included the effects of flip angle (alpha), sequence timings, resonant frequency, gas diffusion coefficient, imaging gradients, T1 and T2. Experiments performed at 1.5 T, on gas phantoms and with healthy human subjects, confirm the predicted theory, and indicate increased SNR with SSFP through use of higher flip angles when compared to optimized spoiled gradient echo (SPGR). Simulations and experiments show some compromise to the SNR and some point spread function broadening at high alpha due to the incomplete refocusing of transverse magnetization, caused by diffusion dephasing from the readout gradient. Mixing of gas polarization levels by diffusion between slices is also identified as a source of signal loss in SSFP at higher alpha through incomplete refocusing. Nevertheless, in the sample experiments, a SSFP sequence with an optimized flip angle of alpha=20 degrees, and 128 sequential phase encoding views, showed a higher SNR when compared to SPGR (alpha=7.2 degrees) with the same bandwidth. Some of the gas sample experiments demonstrated a transient signal response that deviates from theory in the initial phase. This was identified as being caused by radiation damping interactions between the large initial transverse magnetization and the high quality factor (Q=250) birdcage resonator. In 3He NMR experiments, performed without imaging gradients, diffusion dephasing can be mitigated, and the effective T2 is relatively long (1 s). Under these circumstances the SSFP sequence behaves like a CPMG sequence with sinalpha/2 weighting of SNR. Experiments and simulations were also performed to characterize the off-resonance behaviour of the SSFP HP 3He signal. Characteristic banding artifacts due to off-resonance harmonic beating were observed in some of the in vivo SSFP images, for instance in axial slices close to the diaphragm where B0 inhomogeneity is highest. Despite these artifacts, a higher SNR was observed with SSFP in vivo when compared to the SPGR sequence. The trends predicted by theory of increasing SSFP SNR with increasing flip angle were observed in the range alpha=10-20 degrees without compromise to image quality through blurring caused by excessive k-space filtering.

摘要

使用矩阵乘积算符模拟了超极化3He气体对稳态自由进动(SSFP)序列的磁化响应。模拟包括翻转角(α)、序列定时、共振频率、气体扩散系数、成像梯度、T1和T2的影响。在1.5T下对气体模型和健康人体受试者进行的实验证实了预测的理论,并表明与优化的扰相梯度回波(SPGR)相比,使用更高的翻转角时SSFP的信噪比增加。模拟和实验表明,由于读出梯度引起的扩散去相导致横向磁化不完全重聚焦,在高α时信噪比对有所折衷,并且点扩散函数有所展宽。切片间扩散导致的气体极化水平混合也被确定为高α时SSFP中信号损失的一个来源,这是由于不完全重聚焦所致。然而,在样本实验中,与具有相同带宽的SPGR(α=7.2度)相比,具有优化翻转角α=20度和128个连续相位编码视图的SSFP序列显示出更高的信噪比。一些气体样本实验证明了在初始阶段存在偏离理论的瞬态信号响应。这被确定为由大的初始横向磁化与高品质因数(Q=250)鸟笼式谐振器之间的辐射阻尼相互作用引起。在没有成像梯度的3He NMR实验中,扩散去相可以减轻,有效T2相对较长(1秒)。在这种情况下,SSFP序列的行为类似于具有信噪比的sinα/2加权的CPMG序列。还进行了实验和模拟以表征SSFP HP 3He信号的失谐行为。在一些体内SSFP图像中观察到由于失谐谐波拍频导致的特征性带状伪影,例如在靠近膈肌的轴向切片中,那里的B0不均匀性最高。尽管存在这些伪影,但与SPGR序列相比,体内SSFP观察到更高的信噪比。在α=10-20度范围内观察到了理论预测的随着翻转角增加SSFP信噪比增加的趋势,且不会因过度的k空间滤波导致模糊而损害图像质量。

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