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Tailored excitation in 3D with spiral nonselective (SPINS) RF pulses

机译:使用螺旋非选择性(SPINS)RF脉冲进行3D量身定制的激励

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摘要

Brain images acquired at 3T often display central brightening with spatially varying tissue contrast, caused by inhomogeneity in the transmit radiofrequency fields used for excitation. Tailored radiofrequency pulses can provide mitigation of radiofrequency field inhomogeneity, but previous designs have been unsuitable for 3D imaging in rapid pulse sequences. This article presents a nonselective pulse design based on a short (1 ms) 3D spiral k-space trajectory that covers low spatial frequencies. The resulting excitations are optimized to produce a uniform excitation within a specified volume of interest covering the whole brain. B1 mapping and pulse calculation times were reduced by optimizing in only five slices within the brain. The method has been tested with both single and parallel transmission: in phantom experiments, normalized root-mean-square error in excitation was 0.022 for single and 0.020 for parallel transmission. The corresponding results in vivo were 0.066 and 0.055 respectively. A pilot brain imaging study using the proposed pulses for excitation within the Alzheimer's disease neuroimaging initiative magnetization prepared rapid gradient echo (MP-RAGE) protocol, yielded excellent image quality with improved signal to noise ratio in peripheral brain regions and enhanced uniformity of contrast compared with standard excitation. Greatest performance enhancement was achieved using parallel transmission, but single channel transmission offers significant improvement over standard excitation pulses.
机译:3T采集的大脑图像通常显示中心增亮,并具有空间变化的组织对比度,这是由用于激发的发射射频场中的不均匀性引起的。量身定制的射频脉冲可以减轻射频场的不均匀性,但是以前的设计不适用于快速脉冲序列中的3D成像。本文提出了一种基于短(1 ms)3D螺旋k空间轨迹的非选择性脉冲设计,该轨迹覆盖了低空间频率。优化所得的激励,以在覆盖整个大脑的指定目标体积内产生均匀的激励。通过仅在大脑中进行五个切片优化,减少了B1映射和脉冲计算时间。该方法已通过单次传输和并行传输进行了测试:在幻像实验中,单次传输的归一化均方根误差为0.022,并行传输的归一化均方根误差为0.020。相应的体内结果分别为0.066和0.055。使用阿尔茨海默氏病神经成像主动磁化技术在拟议中的脉冲激励下进行的一项先导性脑成像研究,准备了快速梯度回波(MP-RAGE)协议,产生了出色的图像质量,与周围的大脑区域相比,信噪比得到了改善,对比度的均匀性也有所提高。标准激励。使用并行传输实现了最大的性能增强,但是单通道传输相对于标准激励脉冲提供了显着的改进。

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