Truong Trong-Kha, Darnell Dean, Song Allen W
Brain Imaging and Analysis Center, Duke University, Durham, NC, USA.
Brain Imaging and Analysis Center, Duke University, Durham, NC, USA.
Neuroimage. 2014 Dec;103:235-240. doi: 10.1016/j.neuroimage.2014.09.052. Epub 2014 Sep 28.
The purpose of this work was to develop a novel integrated radiofrequency and shim (RF/shim) coil array that can perform parallel reception and localized B0 shimming in the human brain with the same coils, thereby maximizing both the signal-to-noise ratio and shimming efficiency. A 32-channel receive-only head coil array was modified to enable both RF currents (for signal reception) and direct currents (for B0 shimming) to flow in individual coil elements. Its in vivo performance was assessed in the frontal brain region, which is affected by large susceptibility-induced B0 inhomogeneities. The coil modifications did not reduce their quality factor or signal-to-noise ratio. Axial B0 maps and echo-planar images acquired in vivo with direct currents optimized to shim specific slices showed substantially reduced B0 inhomogeneities and image distortions in the frontal brain region. The B0 root-mean-square error in the anterior half of the brain was reduced by 60.3% as compared to that obtained with second-order spherical harmonic shimming. These results demonstrate that the integrated RF/shim coil array can perform parallel reception and localized B0 shimming in the human brain and provide a much more effective shimming than conventional spherical harmonic shimming alone, without taking up additional space in the magnet bore and without compromising the signal-to-noise ratio or shimming performance.
这项工作的目的是开发一种新型的集成射频与匀场(RF/匀场)线圈阵列,该阵列能够使用相同的线圈在人脑内执行并行接收和局部B0匀场,从而使信噪比和匀场效率均达到最大化。对一个32通道的仅用于接收的头部线圈阵列进行了改装,以使射频电流(用于信号接收)和直流电流(用于B0匀场)都能在各个线圈元件中流动。在受大的磁化率诱导B0不均匀性影响的额叶脑区评估了其在体性能。线圈改装并未降低其品质因数或信噪比。在对特定切片进行匀场优化的直流电流作用下在体采集的轴向B0图和回波平面图像显示,额叶脑区的B0不均匀性和图像畸变显著降低。与使用二阶球谐函数匀场获得的结果相比,脑前半部分的B0均方根误差降低了60.3%。这些结果表明,集成RF/匀场线圈阵列能够在人脑内执行并行接收和局部B0匀场,并且比单独的传统球谐函数匀场提供更有效的匀场,而不会在磁体孔内占用额外空间,也不会损害信噪比或匀场性能。