Schmitz-Abecassis Bárbara, Najac Chloé, Plugge Jaimy, van Osch Matthias J P, Ercan Ece
C.J. Gorter MRI Center, Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.
Medical Delta, Delft, The Netherlands.
NMR Biomed. 2024 May;37(5):e5104. doi: 10.1002/nbm.5104. Epub 2024 Jan 23.
Metabolite-weighted chemical exchange saturation transfer MRI can be used to indirectly image metabolites such as creatine and glutamate. This study aims to further explore the contrast of CEST at 2 ppm in the human brain at 7T and investigate the metabolite correlates of CEST at 2 ppm via correlations with magnetic resonance spectroscopy (MRS). Simulations were performed to establish the optimal acquisition parameters, such as total saturation time (t) and B root mean squared (Brms) for CEST at 2 ppm in the human brain. Parameters were validated via in vitro phantom studies at 7T using concentrations, pH and temperature comparable to what is found in the human brain. Finally, 10 healthy volunteers were scanned at 7T for comparison with MRS. Our results show that the optimal parameters to acquire CEST at 2 ppm images are: Brms = 2.14 μT & t = 1500 ms, respectively. Comparison with MRS showed no significant correlation between CEST at 2 ppm and total Creatine measured by MRS (R = 0.19; p-value = 0.273). However, a significant correlation was found between CEST at 2 ppm and Glu (R = 0.39; p-value = 0.033), indicating the broad Glutamate-weighted CEST as the main measurable contributor to CEST at 2 ppm. We identified and confirmed optimal CEST at 2 ppm sequence parameters and validated CEST at 2 ppm measurements in a controlled in vitro environment. Our findings suggest that glutamate is a substantial contributor to the CEST at 2 ppm contrast observed in the human brain, whereas the creatine contribution to CEST at 2 ppm in the brain did not show a measurable contribution.
代谢物加权化学交换饱和转移磁共振成像(CEST MRI)可用于间接成像诸如肌酸和谷氨酸等代谢物。本研究旨在进一步探究7T场强下人类大脑中2ppm处CEST的对比度,并通过与磁共振波谱(MRS)的相关性研究2ppm处CEST的代谢物相关性。进行了模拟以确定最佳采集参数,例如人类大脑中2ppm处CEST的总饱和时间(t)和均方根B值(Brms)。通过在7T场强下进行体外模型研究来验证参数,该研究使用的浓度、pH值和温度与人类大脑中的情况相当。最后,对10名健康志愿者进行了7T场强扫描,以便与MRS进行比较。我们的结果表明,获取2ppm处CEST图像的最佳参数分别为:Brms = 2.14μT和t = 1500ms。与MRS的比较表明,2ppm处的CEST与MRS测量的总肌酸之间无显著相关性(R = 0.19;p值 = 0.273)。然而,发现2ppm处的CEST与谷氨酸之间存在显著相关性(R = 0.39;p值 = 0.033),这表明宽泛的谷氨酸加权CEST是2ppm处CEST的主要可测量贡献因素。我们确定并确认了2ppm处CEST的最佳序列参数,并在可控的体外环境中验证了2ppm处CEST的测量。我们的研究结果表明,谷氨酸是人类大脑中观察到的2ppm处CEST对比度的重要贡献因素,而大脑中肌酸对2ppm处CEST的贡献未显示出可测量的作用。