细胞内对比度增强脂肪饱和 T1 加权梯度回波(ICE-TIGRE)序列的性质:脂肪抑制 T1 加权技术与运动敏化驱动平衡用于改善肝脏成像的对比度增强。

Takashi Nishihara, Yuko Nakamura, Nobuyuki Yoshizawa, Masahiro Takizawa, Toru Shirai, Toru Higaki, Yukiko Honda, Kazuo Awai, Yoshitaka Bito
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引用次数: 0

摘要

钆醋酸既是细胞外造影剂,也是肝细胞特异性造影剂。来自细胞外空间的信号可能会降低病灶与周围肝实质之间的对比度。为了改善肝细胞特异性增强,我们开发了一种细胞内对比增强脂肪饱和 T1 加权梯度回波性质序列(ICE-TIGRE)。它结合了运动敏感驱动平衡(MSDE)脉冲来抑制血流信号。我们使用一个模型和三名志愿者,在不使用钆醋酸的情况下,研究了最佳的 ICE-TIGRE 扫描参数,即 MSDE 脉冲和脂肪饱和脉冲的顺序、持续时间和 MSDE 脉冲的 b 值。ICE-TIGRE 成功提高了肝实质与门静脉之间的对比度。为保持脂肪饱和度,准备脉冲的顺序应为 MSDE-脂肪饱和。持续时间应为 21 ms,以尽量减少 T2 因子对 T1 对比度的影响,b 值应为 60 s/mm2,以便在本研究使用的成像系统中使 ICE-TIGRE 的扩散对比度最大化。
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Nature of the Intracellular-contrast-enhancing Fat-saturated T1-weighted Gradient-echo (ICE-TIGRE) Sequence: A Fat-suppressed T1-weighted Technique with Motion-sensitised Driven-equilibrium for Improved Contrast Enhancement in Liver Imaging.

Gadoxetic acid is both an extracellular- and hepatocyte-specific contrast agent. Signals from the extracellular space may lower the contrast between lesions and the surrounding hepatic parenchyma. To improve hepatocyte-specific enhancement, we developed an intracellular contrast-enhancing fat-saturated T1-weighted gradient-echo nature of the sequence (ICE-TIGRE). It incorporates the motion-sensitized driven-equilibrium (MSDE) pulse to suppress signals from the blood flow. We investigated the optimal ICE-TIGRE scanning parameters, i.e., the order of the MSDE and the fat saturation pulses, the duration time, and the b value of the MSDE pulse, using a phantom and three volunteers without applying gadoxetic acid. ICE-TIGRE successfully increased the contrast between the liver parenchyma and the portal vein. To maintain fat saturation, the preparation pulse order should be MSDE-fat saturation. A duration time of 21 ms should be applied to minimize the effect of the T2 factor on the T1 contrast, and a b value of 60 s/mm2 should be applied to maximize the diffusion contrast for ICE-TIGRE with the imaging system used in this study.

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