Carlson J, Crooks L, Ortendahl D, Kramer D M, Kaufman L
Radiologic Imaging Laboratory, University of California San Francisco 94080.
Radiology. 1988 Jan;166(1 Pt 1):266-70. doi: 10.1148/radiology.166.1.3336691.
The efficiency and quality of three-dimensional Fourier transform (3DFT) magnetic resonance imaging were evaluated and compared with those of 2DFT imaging. For a fixed imaging time and number of sections, 3DFT imaging with conventional spin echoes always had a worse signal-to-noise ratio (S/N) than did 2DFT imaging, when both were optimized with respect to choice of repetition time (TR). With partial-flip magnetic resonance (MR) imaging, S/N was nearly equal for 2DFT and 3DFT imaging when both were optimized with respect to TR and flip angle. 3DFT imaging can have cross-section artifacts that exceed those of 2DFT imaging. For very thin sections these artifacts may be lessened, and 3DFT imaging can achieve this with smaller gradient pulses. Over-all, 3DFT imaging was found to be advantageous only for the very-thin-section imaging and in combination with partial-flip MR imaging.
对三维傅里叶变换(3DFT)磁共振成像的效率和质量进行了评估,并与二维傅里叶变换(2DFT)成像的效率和质量进行了比较。在固定的成像时间和切片数量下,当根据重复时间(TR)的选择对两者进行优化时,采用传统自旋回波的3DFT成像的信噪比(S/N)总是比2DFT成像差。对于部分翻转磁共振(MR)成像,当根据TR和翻转角对两者进行优化时,2DFT和3DFT成像的S/N几乎相等。3DFT成像可能会出现比2DFT成像更严重的横截面伪影。对于非常薄的切片,这些伪影可能会减少,并且3DFT成像可以通过较小的梯度脉冲来实现。总体而言,发现3DFT成像仅在非常薄的切片成像以及与部分翻转MR成像相结合时才具有优势。