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视觉处理的事件相关单次容积功能磁共振逆成像

Event-related single-shot volumetric functional magnetic resonance inverse imaging of visual processing.

作者信息

Lin Fa-Hsuan, Witzel Thomas, Mandeville Joseph B, Polimeni Jonathan R, Zeffiro Thomas A, Greve Douglas N, Wiggins Graham, Wald Lawrence L, Belliveau John W

机构信息

MGH-HST Athinoula A. Martinos Center for Biomedical Imaging, Charlestown, MA 02129, USA.

出版信息

Neuroimage. 2008 Aug 1;42(1):230-47. doi: 10.1016/j.neuroimage.2008.04.179. Epub 2008 Apr 23.

Abstract

Developments in multi-channel radio-frequency (RF) coil array technology have enabled functional magnetic resonance imaging (fMRI) with higher degrees of spatial and temporal resolution. While modest improvement in temporal acceleration has been achieved by increasing the number of RF coils, the maximum attainable acceleration in parallel MRI acquisition is intrinsically limited only by the amount of independent spatial information in the combined array channels. Since the geometric configuration of a large-n MRI head coil array is similar to that used in EEG electrode or MEG SQUID sensor arrays, the source localization algorithms used in MEG or EEG source imaging can be extended to also process MRI coil array data, resulting in greatly improved temporal resolution by minimizing k-space traversal during signal acquisition. Using a novel approach, we acquire multi-channel MRI head coil array data and then apply inverse reconstruction methods to obtain volumetric fMRI estimates of blood oxygenation level dependent (BOLD) contrast at unprecedented whole-brain acquisition rates of 100 ms. We call this combination of techniques magnetic resonance Inverse Imaging (InI), a method that provides estimates of dynamic spatially-resolved signal change that can be used to construct statistical maps of task-related brain activity. We demonstrate the sensitivity and inter-subject reliability of volumetric InI using an event-related design to probe the hemodynamic signal modulations in primary visual cortex. Robust results from both single subject and group analyses demonstrate the sensitivity and feasibility of using volumetric InI in high temporal resolution investigations of human brain function.

摘要

多通道射频(RF)线圈阵列技术的发展使得功能磁共振成像(fMRI)能够实现更高的空间和时间分辨率。虽然通过增加RF线圈的数量在时间加速方面取得了一定的进展,但并行MRI采集中可达到的最大加速本质上仅受组合阵列通道中独立空间信息数量的限制。由于大型MRI头部线圈阵列的几何配置与脑电图电极或脑磁图超导量子干涉装置(MEG SQUID)传感器阵列中使用的配置相似,因此MEG或脑电图源成像中使用的源定位算法可以扩展到也处理MRI线圈阵列数据,通过在信号采集期间最小化k空间遍历,从而极大地提高时间分辨率。我们采用一种新颖的方法,采集多通道MRI头部线圈阵列数据,然后应用逆重建方法,以前所未有的100毫秒全脑采集速率获得血氧水平依赖(BOLD)对比度的体积fMRI估计值。我们将这种技术组合称为磁共振逆成像(InI),这是一种提供动态空间分辨信号变化估计值的方法,可用于构建与任务相关的大脑活动统计图。我们使用事件相关设计来探测初级视觉皮层中的血液动力学信号调制,从而证明了体积InI的敏感性和受试者间可靠性。单受试者和组分析的稳健结果证明了在人类脑功能的高时间分辨率研究中使用体积InI的敏感性和可行性。

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