MRC/UCT Medical Imaging Research Unit, Department of Human Biology, University of Cape Town, South Africa.
NMR Biomed. 2012 Feb;25(2):347-58. doi: 10.1002/nbm.1756. Epub 2011 Jul 28.
A method is presented to correct the effects of motion and motion-related B(0) perturbations on spectroscopic imaging in real time through the use of a volumetric navigator. It is demonstrated that, for an axial slice, lifting the chin significantly disrupts the B(0) homogeneity in the zero-order (frequency), first-order Y (coronal) axis and second-order ZY term. This volumetric navigator is able to measure and correct in real time both head pose and zero- to first-order B(0) inhomogeneities. The volumetric navigator was validated in six volunteers who deliberately lifted and then dropped their chin during the scan. These scans show that motion correction alone is not sufficient to recover the spectral quality. By applying real-time shim adjustments, spectral quality was fully recovered to linewidths below 0.08 ppm and the signal-to-noise ratio to within acceptable limits in five of six subjects. In the sixth subject, 83% of the spectra within the volume of interest were recovered, compared with the worst case nonshim-corrected scan, where none of the voxels fell within these quality bounds. It is shown that the use of a volumetric navigator comes at no additional cost to the scan time or spectral signal-to-noise ratio.
本文提出了一种通过使用容积导航仪实时校正运动和与运动相关的 B(0) 扰动对光谱成像影响的方法。结果表明,在轴位切片中,抬头会显著破坏零阶(频率)、一阶 Y(冠状)轴和二阶 ZY 项的 B(0) 均匀性。该容积导航仪能够实时测量和校正头部姿势和零到一阶 B(0) 不均匀性。在六名志愿者中验证了该容积导航仪,他们在扫描过程中故意抬起和放下下巴。这些扫描表明,仅进行运动校正不足以恢复光谱质量。通过实时进行匀场调整,在五个受试者中的五个恢复了线宽低于 0.08 ppm 和信噪比在可接受范围内的光谱质量。在第六个受试者中,与最差情况的未匀场校正扫描相比,83%的感兴趣容积内的光谱得到了恢复,在最差情况的未匀场校正扫描中,没有一个体素落在这些质量范围内。结果表明,使用容积导航仪不会增加扫描时间或光谱信噪比。