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单次采集水脂分离:动态成像的可行性研究

Single acquisition water-fat separation: feasibility study for dynamic imaging.

作者信息

Yu Huanzhou, Reeder Scott B, McKenzie Charles A, Brau Anja C S, Shimakawa Ann, Brittain Jean H, Pelc Norbert J

机构信息

Global Applied Science Laboratory, GE Healthcare, Menlo Park, CA, USA.

出版信息

Magn Reson Med. 2006 Feb;55(2):413-22. doi: 10.1002/mrm.20771.

Abstract

Water-fat separation can be challenging in the presence of field inhomogeneities. Three-point (3-pt) water-fat separation methods achieve robust performance by measuring and compensating for field inhomogeneities; however, they triple the scan time. The "1+-pt" water-fat separation method proposed in this article for dynamic or repetitive imaging situations combines 3-pt methods' ability to correct for field inhomogeneities with the scan efficiency of a single acquisition method to achieve high temporal and spatial resolutions and robust water-fat separation. Single-echo data are collected with water and fat at a relative phase shift of an odd multiple of pi/2. To correct for undesired phase modulation, phase maps are estimated from a 3-pt calibration scan acquired prior to dynamic imaging. The phase maps are assumed to be slowly varying in time, so they may be used for correcting the phase of the subsequent single-echo signals at the same imaging location. Noise performance was investigated and shown to be equivalent to a single excitation acquisition. The 1+-pt method can also be used in conjunction with parallel imaging. In this situation, the calibration scans required by both methods can be integrated into a shared calibration scan. Promising results were obtained in breast, abdominal, and cardiac imaging applications.

摘要

在存在场不均匀性的情况下,水脂分离可能具有挑战性。三点(3-pt)水脂分离方法通过测量和补偿场不均匀性来实现稳健的性能;然而,它们会使扫描时间增加两倍。本文针对动态或重复成像情况提出的“1+-pt”水脂分离方法,将3-pt方法校正场不均匀性的能力与单次采集方法的扫描效率相结合,以实现高时间和空间分辨率以及稳健的水脂分离。在水和脂肪的相对相移为π/2的奇数倍时收集单回波数据。为了校正不期望的相位调制,从动态成像之前采集的3-pt校准扫描中估计相位图。假设相位图在时间上变化缓慢,因此它们可用于校正同一成像位置处后续单回波信号的相位。对噪声性能进行了研究,结果表明其与单次激发采集相当。1+-pt方法也可与并行成像结合使用。在这种情况下,两种方法所需的校准扫描可以整合到一个共享的校准扫描中。在乳腺、腹部和心脏成像应用中获得了有前景的结果。

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