Morozov Darya, Lopez Rios Nibardo, Duval Tanguy, Foias Alexandru, Cohen-Adad Julien
NeuroPoly Lab, Institute of Biomedical Engineering, Polytechnique Montreal, Montreal, QC, Canada.
NeuroPoly Lab, Institute of Biomedical Engineering, Polytechnique Montreal, Montreal, QC, Canada; Medical Biophysics Center, University of Oriente, Santiago de Cuba, Cuba.
Magn Reson Imaging. 2018 Jul;50:119-124. doi: 10.1016/j.mri.2018.04.001. Epub 2018 Apr 4.
Cardiac-related spinal cord motion affects diffusion-weighted (DWI) signal. The goal of this study was to further quantify the specific detrimental effect of cord translational motion on the DWI signal in order to make better informed decisions about the cost-benefit of cardiac gating. We designed an MRI-compatible phantom mimicking the spinal cord translational motion. Cardiac-gated DWI data were acquired by varying the trigger delay and the b-values. Evaluation of the effect of motion on the DWI signal was done by computing the apparent diffusion coefficient (ADC) along (z-direction) and orthogonal (y- and x-directions) to the phantom. The computed ADCs of the phantom moving along Z were similar for the three orthogonal diffusion-encoding directions, with an average value of 1.65·10 , 1.66·10 and 1.65·10 m/s along X, Y and Z respectively. DW phase images on the other hand showed the expected linear relationship with phantom velocity. Pure translational motion has minor effect on the diffusion-weighted magnitude signal. The sudden signal drop typically observed in in vivo spinal cord DWI is likely not caused by translational motion of the spinal cord, and possibly originates from non-rigid compression/stretching of the cord and/or from intra-voxel incoherent motion (IVIM).
与心脏相关的脊髓运动影响扩散加权(DWI)信号。本研究的目的是进一步量化脊髓平移运动对DWI信号的具体有害影响,以便在心脏门控的成本效益方面做出更明智的决策。我们设计了一种模拟脊髓平移运动的MRI兼容体模。通过改变触发延迟和b值来采集心脏门控DWI数据。通过计算沿体模(z方向)及其正交方向(y和x方向)的表观扩散系数(ADC)来评估运动对DWI信号的影响。沿Z轴移动的体模在三个正交扩散编码方向上计算得到的ADC相似,沿X、Y和Z方向的平均值分别为1.65·10⁻³、1.66·10⁻³和1.65·10⁻³m²/s。另一方面,DW相位图像显示出与体模速度的预期线性关系。单纯的平移运动对扩散加权幅度信号影响较小。在体内脊髓DWI中通常观察到的突然信号下降可能不是由脊髓的平移运动引起的,可能源于脊髓的非刚性压缩/拉伸和/或体素内不相干运动(IVIM)。