Lee S Y, Cho Z H
Department of Electrical Science, Korea Advanced Institute of Science, Cheongyangni, Seoul, Korea.
Magn Reson Med. 1988 Oct;8(2):142-50. doi: 10.1002/mrm.1910080204.
Recently, the gradient echo imaging sequence in conjunction with small flip angle excitations and short repetition times has been widely used for fast NMR imaging. As the repetition time decreases to an extent comparable to the spin-spin relaxation time T2, the residual phase coherency of the transverse spin magnetization tends to form another nuclear signal which is heavily weighted by T2 and similar to a long TR/long TE spin-echo signal. This effect, although expected, has not been utilized in the conventional fast gradient echo imaging. When this residual phase coherency is utilized in conjunction with the fast SSFP (steady-state free precession) technique, both the FID and the echo signals can be obtained. In this paper, we have proposed a new technique by which simultaneous acquisitions of both the FID and the echo signals are possible. Experiments on this fast SSFP mode imaging have shown that the FID signal is T1-weighted while the echo signal is strongly T2-weighted. The flip angle optimal for maximizing signal and related contrast are also studied in conjunction with the proposed sequence and the experimental results are presented.
最近,梯度回波成像序列结合小翻转角激发和短重复时间已被广泛用于快速核磁共振成像。随着重复时间缩短到与自旋 - 自旋弛豫时间T2相当的程度,横向自旋磁化的残余相位相干性倾向于形成另一个由T2严重加权且类似于长TR/长TE自旋回波信号的核信号。这种效应虽然是预期的,但在传统的快速梯度回波成像中并未得到利用。当这种残余相位相干性与快速稳态自由进动(SSFP)技术结合使用时,既能获得FID信号又能获得回波信号。在本文中,我们提出了一种新技术,通过该技术可以同时采集FID和回波信号。对这种快速SSFP模式成像的实验表明,FID信号是T1加权的,而回波信号是强T2加权的。还结合所提出的序列研究了使信号和相关对比度最大化的最佳翻转角,并给出了实验结果。