Radiology Department, University of Illinois at Chicago, Chicago, Illinois, USA.
Bioengineering Department, University of Illinois at Chicago, Chicago, Illinois, USA.
Magn Reson Med. 2022 Apr;87(4):1731-1741. doi: 10.1002/mrm.29072. Epub 2021 Nov 9.
Z-spectrum imaging, defined as the consecutive collection of images after saturating over a range of frequency offsets, has been recently proposed as a method to measure the fat-water fraction by the simultaneous detection of fat and water resonances. By incorporating a binomial pulse irradiated at each offset before the readout, the spectral selectivity of the sequence can be further amplified, making it possible to monitor the subtle proton resonance frequency shift that follows a change in temperature.
We tested the hypothesis in aqueous and cream phantoms and in healthy mice, all under thermal challenge. The binomial module consisted of 2 sinc-shaped pulses of opposite phase separated by a delay. Such a delay served to spread out off-resonance spins, with the resulting excitation profile being a periodic function of the delay and the chemical shift.
During heating experiments, the water resonance shifted downfield, and by fitting the curve to a sine function it was possible to quantify the change in temperature. Results from Z-spectrum imaging correlated linearly with data from conventional MRI techniques like T mapping and phase differences from spoiled GRE.
Because the measurement is performed solely on magnitude images, the technique is independent of phase artifacts and is therefore applicable in mixed tissues (e.g., fat). We showed that Z-spectrum imaging can deliver reliable temperature change measurement in both muscular and fatty tissues.
Z 谱成像,定义为在一系列频率偏移处饱和后连续采集图像,最近被提出作为一种通过同时检测脂肪和水共振来测量脂肪-水分数的方法。通过在读取之前在每个偏移处辐照二项式脉冲,可以进一步放大序列的光谱选择性,从而可以监测在温度变化后质子共振频率的细微偏移。
我们在水相和乳膏体模以及健康小鼠中进行了测试,所有这些都在热挑战下进行。二项式模块由两个相位相反的 sinc 形脉冲组成,它们之间有一个延迟。这样的延迟用于扩展离共振的自旋,从而得到的激发轮廓是延迟和化学位移的周期性函数。
在加热实验中,水共振向下场移动,通过将曲线拟合为正弦函数,可以定量测量温度变化。Z 谱成像的结果与传统 MRI 技术(如 T 映射和失超 GRE 的相位差)的数据呈线性相关。
由于测量仅在幅度图像上进行,因此该技术不受相位伪影的影响,因此适用于混合组织(例如脂肪)。我们表明,Z 谱成像可以在肌肉和脂肪组织中可靠地测量温度变化。