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使用可变翻转角在二维线性重排稳态自由进动成像中提高信噪比。

Improved SNR in linear reordered 2D bSSFP imaging using variable flip angles.

作者信息

Paul Dominik, Zaitsev Maxim

机构信息

Department of Diagnostic Radiology, Medical Physics, University Hospital Freiburg, Freiburg, Germany.

出版信息

Magn Reson Imaging. 2009 Sep;27(7):933-41. doi: 10.1016/j.mri.2009.01.021. Epub 2009 Mar 16.

Abstract

This article presents a variable flip-angle approach for balanced steady-state free precession (bSSFP) imaging, which allows increases in signal-to-noise ratio (SNR) and contrast-to-noise ratio (CNR) while keeping specific absorption rate (SAR) constant or reduces SAR for given CNR and SNR. The gain in SNR is achieved by utilizing the higher signal in the transient phase. Flip-angle variation during the echo train is realized using a trigonometric function with M steps (ramp length). Variation is combined with a linear k-space reordering such that outer parts of k-space are sampled using a lower flip angle alpha(min), while the central part of k-space is acquired with a higher flip angle alpha(max). No additional preparation or dummy cycles are applied prior to data acquisition. Several variation schemes with different starting flip angles alpha(min) and ramp length M are considered. For example, using alpha(min)=1 degrees and M=96, alpha(max) can be set to 47 degrees without exceeding SAR limits at 3 T and gaining up to 50% in SNR, while, conventionally, alpha=34 degrees is the maximal possible flip angle. Resolution seems unaffected in volunteer imaging. In all cases, no transient artifacts due to flip-angle variation were observed. This article demonstrates the use of flip-angle variations in bSSFP to increase SNR and CNR while keeping SAR constant, which is especially important at higher field strengths. Flip-angle variation can also be combined with other methods such as parallel imaging techniques for further SAR reduction.

摘要

本文提出了一种用于平衡稳态自由进动(bSSFP)成像的可变翻转角方法,该方法能够在保持特定吸收率(SAR)不变的情况下提高信噪比(SNR)和对比度噪声比(CNR),或者在给定的CNR和SNR条件下降低SAR。SNR的提高是通过利用瞬态阶段的较高信号来实现的。回波链期间的翻转角变化是使用具有M步(斜坡长度)的三角函数来实现的。这种变化与线性k空间重排序相结合,使得k空间的外部部分使用较低的翻转角α(min)进行采样,而k空间的中心部分则以较高的翻转角α(max)进行采集。在数据采集之前不应用额外的准备或虚拟周期。考虑了几种具有不同起始翻转角α(min)和斜坡长度M的变化方案。例如,使用α(min) = 1°和M = 96时,在3T时α(max)可以设置为47°而不超过SAR限制,并使SNR提高高达50%,而传统上α = 34°是最大可能的翻转角。在志愿者成像中分辨率似乎未受影响。在所有情况下,均未观察到由于翻转角变化引起的瞬态伪影。本文展示了在bSSFP中使用翻转角变化来提高SNR和CNR同时保持SAR不变,这在更高场强下尤为重要。翻转角变化还可以与其他方法(如并行成像技术)相结合以进一步降低SAR。

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