Jones Kyle M, Stuehm Carol A, Hsu Charles C, Kuo Phillip H, Pagel Mark D, Randtke Edward A
Department of Biomedical Engineering, University of Arizona, Tucson, AZ.
Department of Medical Imaging, University of Arizona, Tucson, AZ.
Tomography. 2017 Dec;3(4):201-210. doi: 10.18383/j.tom.2017.00017.
Performing chemical exchange saturation transfer (CEST) magnetic resonance imaging (MRI) in lung tissue is difficult because of motion artifacts. We, therefore, developed a CEST MRI acquisition and analysis method that performs retrospective respiration gating. Our method used an acquisition scheme with a short 200-millisecond saturation pulse that can accommodate the timing of the breathing cycle, and with saturation applied at frequencies in 0.03-ppm intervals. The Fourier transform of each image was used to calculate the difference in phase angle between adjacent pixels in the longitudinal direction of the respiratory motion. Additional digital filtering techniques were used to evaluate the breathing cycle, which was used to construct CEST spectra from images during quiescent periods. Results from CEST MRI with and without respiration gating analysis were used to evaluate the asymmetry of the magnetization transfer ratio (MTR), a measure of CEST, for an egg white phantom that underwent cyclic motion, in the liver of healthy patients, as well as liver and tumor tissues of patients diagnosed with lung cancer. Retrospective respiration gating analysis produced more precise measurements in all cases with significant motion compared with nongated analysis methods. Finally, a preliminary clinical study with the same respiration-gated CEST MRI method showed a large increase in MTR after radiation therapy, a small increase or decrease in MTR after chemotherapy, and mixed results with combined chemoradiation therapy. Therefore, our retrospective respiration-gated method can improve CEST MRI evaluations of tumors and organs that are affected by respiratory motion.
由于运动伪影,在肺组织中进行化学交换饱和转移(CEST)磁共振成像(MRI)很困难。因此,我们开发了一种执行回顾性呼吸门控的CEST MRI采集和分析方法。我们的方法使用了一种采集方案,其具有一个200毫秒的短饱和脉冲,该脉冲可以适应呼吸周期的时间,并以0.03 ppm的频率间隔施加饱和。每个图像的傅里叶变换用于计算呼吸运动纵向方向上相邻像素之间的相位角差异。额外的数字滤波技术用于评估呼吸周期,该呼吸周期用于在静止期从图像构建CEST谱。使用有和没有呼吸门控分析的CEST MRI结果来评估磁化转移率(MTR,一种CEST测量指标)的不对称性,该指标用于经历循环运动的蛋清模型、健康患者肝脏以及被诊断为肺癌患者的肝脏和肿瘤组织。与非门控分析方法相比,回顾性呼吸门控分析在所有存在显著运动的情况下都能产生更精确的测量结果。最后,使用相同的呼吸门控CEST MRI方法进行的一项初步临床研究表明,放疗后MTR大幅增加,化疗后MTR有小幅度增加或减少,放化疗联合治疗的结果则好坏参半。因此,我们的回顾性呼吸门控方法可以改善受呼吸运动影响的肿瘤和器官的CEST MRI评估。