首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Optimization and validation of a fully-integrated pulse sequence for modified look-locker inversion-recovery (MOLLI) T1 mapping of the heart.
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Optimization and validation of a fully-integrated pulse sequence for modified look-locker inversion-recovery (MOLLI) T1 mapping of the heart.

机译:优化和验证完全整合的脉冲序列,用于心脏的改良型锁相环反转恢复(MOLLI)T1映射。

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PURPOSE: To optimize and validate a fully-integrated version of modified Look-Locker inversion-recovery (MOLLI) for clinical single-breathhold cardiac T1 mapping. MATERIALS AND METHODS: A MOLLI variant allowing direct access to all pulse sequence parameters was implemented on a 1.5T MR system. Varying four critical sequence parameters, MOLLI was performed in eight gadolinium-doped agarose gel phantoms at different simulated heart rates. T1 values were derived for each variant and compared to nominal T1 values. Based on the results, MOLLI was performed in midcavity short-axis views of 20 healthy volunteers pre- and post-Gd-DTPA. RESULTS: In phantoms, a readout flip angle of 35 degrees , minimum TI of 100 msec, TI increment of 80 msec, and use of three pausing heart cycles allowed for most accurate and least heart rate-dependent T1 measurements. Using this pulse sequence scheme in humans, T1 relaxation times in normal myocardium were comparable to data from previous studies, and showed narrow ranges bothpre- and postcontrast without heart rate dependency. CONCLUSION: We present an optimized implementation of MOLLI for fast T1 mapping with high spatial resolution, which can be integrated into routine imaging protocols. T1 accuracy is superior to the original set of pulse sequence parameters and heart rate dependency is avoided.
机译:目的:为临床单屏心电图心脏T1图优化和验证改良Look-Locker反演恢复(MOLLI)的完全集成版本。材料与方法:在1.5T MR系统上实现了允许直接访问所有脉冲序列参数的MOLLI变体。改变了四个关键序列参数,在八个g掺杂的琼脂糖凝胶体模中以不同的模拟心率执行了MOLLI。得出每个变量的T1值,并将其与标称T1值进行比较。根据结果​​,在Gd-DTPA之前和之后对20名健康志愿者的中腔短轴视图进行了MOLLI。结果:在幻像中,读数翻转角为35度,最小TI为100毫秒,TI增量为80毫秒,并使用三个暂停的心动周期,可以进行最准确且心率依赖性最小的T1测量。在人类中使用这种脉冲序列方案,正常心肌中的T1弛豫时间与先前研究的数据相当,并且在对比前和对比后显示窄范围,而没有心率依赖性。结论:我们提出了一种具有高空间分辨率的,用于快速T1映射的MOLLI的优化实现,可以将其集成到常规成像协议中。 T1精度优于原始的脉冲序列参数集,并且避免了心率依赖性。

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