Herzka Daniel A, Kellman Peter, Aletras Anthony H, Guttman Michael A, McVeigh Elliot R
Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, Maryland 20892-1061, USA.
Magn Reson Med. 2002 Apr;47(4):655-64. doi: 10.1002/mrm.10105.
Refocused steady-state free precession (SSFP), or fast imaging with steady precession (FISP or TrueFISP), has recently proven valuable for cardiac imaging because of its high signal-to-noise ratio (SNR) and excellent blood-myocardium contrast. In this study, various implementations of multiecho SSFP or EPI-SSFP for imaging in the heart are presented. EPI-SSFP has higher scan-time efficiency than single-echo SSFP, as two or more phase-encode lines are acquired per repetition time (TR) at the cost of a modest increase in TR. To minimize TR, a noninterleaved phase-encode order in conjunction with a phased-array ghost elimination (PAGE) technique was employed, removing the need for echo time shifting (ETS). The multishot implementation of EPI-SSFP was used to decrease the breath-hold duration for cine acquisitions or to increase the temporal or spatial resolution for a fixed breath-hold duration. The greatest gain in efficiency was obtained with the use of a three-echo acquisition. Image quality for cardiac cine applications using multishot EPI-SSFP was comparable to that of single-echo SSFP in terms of blood-myocardium contrast and contrast-to-noise ratio (CNR). The PAGE method considerably reduced flow artifacts due to both the inherent ghost suppression and the concomitant reduction in phase-encode blip size. The increased TR of multishot EPI-SSFP led to a reduced specific absorption rate (SAR) for a fixed RF flip angle, and allowed the use of a larger flip angle without increasing the SAR above the FDA-approved limits.
重新聚焦稳态自由进动(SSFP),即稳态进动快速成像(FISP或TrueFISP),由于其高信噪比(SNR)和出色的血液-心肌对比度,最近已被证明在心脏成像中具有重要价值。在本研究中,展示了用于心脏成像的多回波SSFP或EPI-SSFP的各种实现方式。EPI-SSFP比单回波SSFP具有更高的扫描时间效率,因为在每个重复时间(TR)采集两条或更多条相位编码线,代价是TR略有增加。为了最小化TR,采用了非交错相位编码顺序并结合相控阵鬼影消除(PAGE)技术,从而无需回波时间偏移(ETS)。EPI-SSFP的多激发实现方式用于缩短电影采集的屏气时间,或在固定屏气时间内提高时间或空间分辨率。使用三回波采集可获得最大的效率提升。在血液-心肌对比度和对比噪声比(CNR)方面,使用多激发EPI-SSFP进行心脏电影应用的图像质量与单回波SSFP相当。由于固有的鬼影抑制以及随之而来的相位编码尖峰大小的减小,PAGE方法大大减少了流动伪影。对于固定的射频翻转角,多激发EPI-SSFP增加的TR导致比吸收率(SAR)降低,并允许使用更大的翻转角而不会使SAR超过FDA批准的限值。