首页> 外文期刊>NeuroImage >K-space reconstruction of magnetic resonance inverse imaging (K-InI) of human visuomotor systems.
【24h】

K-space reconstruction of magnetic resonance inverse imaging (K-InI) of human visuomotor systems.

机译:人体视觉运动系统磁共振逆成像(K-InI)的K空间重构。

获取原文
获取原文并翻译 | 示例
           

摘要

Using simultaneous measurements from multiple channels of a radio-frequency coil array, magnetic resonance inverse imaging (InI) can achieve ultra-fast dynamic functional imaging of the human with whole-brain coverage and a good spatial resolution. Mathematically, the InI reconstruction is a generalization of parallel MRI (pMRI), which includes image space and k-space reconstructions. Because of the auto-calibration technique, the pMRI k-space reconstruction offers more robust and adaptive reconstructions compared to the image space algorithm. Here we present the k-space InI (K-InI) reconstructions to reconstruct the highly accelerated BOLD-contrast fMRI data of the human brain to achieve 100 ms temporal resolution. Simulations show that K-InI reconstructions can offer 3D image reconstructions at each time frame with reasonable spatial resolution, which cannot be obtained using the previously proposed image space minimum-norm estimates (MNE) or linear constraint minimum variance (LCMV) spatial filtering reconstructions. The InI reconstructions of in vivo BOLD-contrast fMRI data during a visuomotor task show that K-InI offer 3 to 5 fold more sensitive detection of the brain activation than MNE and a comparable detection sensitivity to the LCMV reconstructions. The group average of the high temporal resolution K-InI reconstructions of the hemodynamic response also shows a relative onset timing difference between the visual (first) and somatomotor (second) cortices by 400 ms (600 ms time-to-peak timing difference). This robust and sensitive K-InI reconstruction can be applied to dynamic MRI acquisitions using a large-n coil array to improve the spatiotemporal resolution.
机译:通过同时从射频线圈阵列的多个通道进行测量,磁共振逆成像(InI)可以实现全脑覆盖并具有良好空间分辨率的人体超快速动态功能成像。在数学上,InI重建是并行MRI(pMRI)的概括,其中包括图像空间和k空间重建。由于采用了自动校准技术,与图像空间算法相比,pMRI k空间重建可提供更强大和自适应的重建。在这里,我们介绍k空间InI(K-InI)重建,以重建人脑的高度加速BOLD对比度fMRI数据,以实现100 ms的时间分辨率。仿真显示,K-InI重建可以在每个时间帧以合理的空间分辨率提供3D图像重建,而使用先前提出的图像空间最小范数估计(MNE)或线性约束最小方差(LCMV)空间滤波重建无法获得这种分辨率。视觉运动任务期间体内BOLD对比度fMRI数据的InI重建显示,K-InI提供的脑部激活检测灵敏度比MNE高3至5倍,并且检测灵敏度与LCMV重建相当。血液动力学反应的高时间分辨率K-InI重建的组均值还显示了视觉皮层(第一皮层)和躯体运动皮层(第二皮层)之间的相对发作时间差400毫秒(600毫秒峰峰值时间差)。这种强大而灵敏的K-InI重建可以使用大n线圈阵列应用于动态MRI采集,以提高时空分辨率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号