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采用次优扰相梯度的多回波成像。

Multiecho imaging with suboptimal spoiler gradients.

作者信息

Does M D, Snyder R E

机构信息

Department of Biomedical Engineering, University of Alberta, Edmonton, Alberta, T6G 2G3, Canada.

出版信息

J Magn Reson. 1998 Mar;131(1):25-31. doi: 10.1006/jmre.1997.1320.

Abstract

Although multiecho imaging may be used to measure transverse relaxation (T2), B1 and B0 inhomogeneity generally gives rise to unwanted coherence pathway signals which result in erroneous T2 measurements. One approach to suppressing this unwanted signal is to center each rf refocusing pulse between spoiler gradients which dephase the unwanted signal; however, hardware limitations often dictate the use of suboptimal spoiler gradients, that is, gradients that cannot provide sufficient dephasing strength. Using simulations, this work demonstrates that by means of a small additional spoiler gradient prior to the first rf refocusing pulse it is possible to reduce substantially the contribution from unwanted coherence pathways in multiecho imaging studies that use suboptimal spoiler gradients. This reduction of unwanted signal results in measured T2 values within approximately 1% of values obtained using spoiler gradients of optimal strength. These results were found for a wide range of biologically relevant T1 and T2 values, missettings of the rf refocusing pulse as large as 5%, and frequency offsets of up to 25 Hz. Multiecho image data agreed with the simulations. Using the additional spoiler gradient it is possible to reduce spoiler gradient strengths by up to 75%.

摘要

尽管多回波成像可用于测量横向弛豫(T2),但B1和B0的不均匀性通常会产生不需要的相干路径信号,从而导致错误的T2测量结果。抑制这种不需要信号的一种方法是将每个射频重聚焦脉冲置于扰相梯度之间的中心位置,该扰相梯度会使不需要的信号失相;然而,硬件限制常常决定了要使用次优的扰相梯度,即无法提供足够失相强度的梯度。通过模拟,这项工作表明,在第一个射频重聚焦脉冲之前施加一个小的额外扰相梯度,就有可能在使用次优扰相梯度的多回波成像研究中大幅减少不需要的相干路径的贡献。不需要信号的这种减少使得测量得到的T2值与使用最佳强度扰相梯度所获得的值相差约1%以内。对于广泛的生物学相关T1和T2值、高达5%的射频重聚焦脉冲失谐以及高达25 Hz的频率偏移,都得到了这些结果。多回波图像数据与模拟结果一致。使用额外的扰相梯度可以将扰相梯度强度降低多达75%。

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