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Three-Dimensional Fat-Suppressed Steady-State Free Precession Imaging for Female Reproductive Organs

机译:女性生殖器官的三维脂肪抑制稳态自由进动成像

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Purpose: The balanced turbo field-echo (B-TFE) steady-state free precession sequence has a high signal-tonoise ratio (SNR), which makes it possible to obtain a high-resolution image within a reasonable scanning time. We used optimized three-dimensional (3D) B-TFE for the female reproductive organs. Materials and Methods: SNR of fat was measured with a phantom, and spectral attenuated inversion recovery (SPAIR) inversion delay time was set to the null point of the fat signal. Five healthy female volunteers aged 26-30 years (mean 28 years) were included in the study. Contrasts between mesenteric fat and myometrium, myometrium and junctional zone, junctional zone and endometrium, mesenteric fat and ovarian stroma, and ovarian stroma and follicles were subsequently determined. Two radiologists and two radiological technologists conducted the visual assessment of the images, with respect to the quality of the images, reviewed the four-point scale with regard to contrast, homogeneity of fat suppression, and artifacts. Furthermore, the best combinations of the contrasts for each flip angle (FA) were assessed using Steel-Dwass multiple comparison test. Results: The SPAIR inversion delay time was 120 ms with FA of 60 and 90 degrees and 150 ms with FA of 30 degrees. Suitable FAumber of startup echo combinations for contrast were 90 degrees/10, 60 degrees/20, and 30 degrees/30; visual assessment indicated that the best combination was 90/10. The artifact was significantly different between 30 degrees/30 and 60 degrees/20 and between 90 degrees/10 and 30 degrees/30 (p < 0.01). In clinical patients' images, the gestational sac, the endometrial polyp, and the attachment point with the stalk of the submucosal myoma and polypoid adenomyoma were depicted clearly in multi-planar reconstruction images. Conclusion: Optimizing sequence parameter of 3D B-TFE is applicable in study of the female reproductive organs.
机译:目的:平衡涡轮场回波(B-TFE)稳态自由进动序列具有较高的信噪比(SNR),这使得可以在合理的扫描时间内获得高分辨率图像。我们对女性生殖器官使用了优化的三维(3D)B-TFE。材料和方法:用幻像仪测量脂肪的SNR,并将光谱衰减的反转恢复(SPAIR)反转延迟时间设置为脂肪信号的零点。这项研究包括五名年龄在26至30岁(平均28岁)的健康女性志愿者。随后确定了肠系膜脂肪与子宫肌层,子宫肌层与交界区,交界区与子宫内膜,肠系膜脂肪与卵巢基质以及卵巢基质和卵泡之间的对比。两名放射科医生和两名放射技师对图像进行了视觉评估,以评估图像质量,并就对比度,抑制脂肪的均匀性和伪影进行了四点评估。此外,使用Steel-Dwass多重比较测试评估了每个翻转角(FA)的对比度的最佳组合。结果:SPAIR反转延迟时间在FA为60和90度时为120 ms,在FA为30度时为150 ms。适用于对比度的FA /启动回波组合数为90度/ 10、60度/ 20和30度/ 30;视觉评估表明最佳组合为90/10。伪影在30度/ 30与60度/ 20之间以及90度/ 10与30度/ 30之间存在显着差异(p <0.01)。在临床患者的图像中,在多平面重建图像中清楚地描绘了胎囊,子宫内膜息肉以及粘膜下肌瘤和息肉样腺肌瘤的茎与附着点。结论:3D B-TFE序列参数的优化可用于女性生殖器官的研究。

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