Hilfiker P, Zanetti M, Debatin J F, McKinnon G, Hodler J
Department of Radiology, University of Zurich, Switzerland.
Invest Radiol. 1995 Feb;30(2):110-4. doi: 10.1097/00004424-199502000-00009.
The purpose of this investigation is to compare a fat-suppressed T2-weighted fast spin-echo (FSE) sequence in bone marrow abnormalities with an FSE STIR sequence that recently has become commercially available.
Fast spin-echo images (repetition time [TR], 3500-5000 mseconds; echo time [TE], 96-114 mseconds) and FSE STIR images (TR, 3000-5000 mseconds; TE, 32-40 mseconds; inversion time [TI], 140-150 mseconds) were compared quantitatively and qualitatively calculating signal-to-noise ratios (SNRs), contrast-to-noise ratios (CNRs), and lesion conspicuity and using a qualitative scoring system.
Signal-to-noise ratio (mean +/- standard deviation) was 36.4 +/- 19.3 for the FSE and 29.0 +/- 15.9 for the FSE STIR images (P = .002). Contrast-to-noise ratio (mean +/- standard deviation) was 18.7 +/- 14.3 for the FSE and 20.3 +/- 16.0 for the FSE STIR images (P = .45). Lesion conspicuity (mean +/- standard deviation) was 1.7 +/- 1.5 for the FSE and 3.5 +/- 4.0 for the FSE STIR images (P = .025). The most important difference in the qualitative evaluation related to the better signal homogeneity on the FSE STIR images.
Fast spin-echo STIR images may be preferable to FSE images with fat suppression due to better image homogeneity and lesion conspicuity.
本研究的目的是比较脂肪抑制T2加权快速自旋回波(FSE)序列与近期已商业化的FSE短TI反转恢复(STIR)序列在骨髓异常中的表现。
对快速自旋回波图像(重复时间[TR],3500 - 5000毫秒;回波时间[TE],96 - 114毫秒)和FSE STIR图像(TR,3000 - 5000毫秒;TE,32 - 40毫秒;反转时间[TI],140 - 150毫秒)进行定量和定性比较,计算信噪比(SNR)、对比噪声比(CNR)以及病变清晰度,并使用定性评分系统。
FSE图像的信噪比(均值±标准差)为36.4±19.3,FSE STIR图像的信噪比为29.0±15.9(P = 0.002)。FSE图像的对比噪声比(均值±标准差)为18.7±14.3,FSE STIR图像的对比噪声比为20.3±16.0(P = 0.45)。FSE图像的病变清晰度(均值±标准差)为1.7±1.5,FSE STIR图像的病变清晰度为3.5±4.0(P = 0.025)。定性评估中最重要的差异在于FSE STIR图像具有更好的信号均匀性。
由于图像均匀性和病变清晰度更好,快速自旋回波STIR图像可能优于脂肪抑制FSE图像。