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基于敏感性的功能脑映射通过 3D 反卷积磁共振相位激活图。

Susceptibility-based functional brain mapping by 3D deconvolution of an MR-phase activation map.

机构信息

The Mind Research Network and LBERI, Albuquerque, NM 87106, USA.

出版信息

J Neurosci Methods. 2013 May 30;216(1):33-42. doi: 10.1016/j.jneumeth.2013.03.003. Epub 2013 Mar 22.

Abstract

The underlying source of T2*-weighted magnetic resonance imaging (T2MRI) for brain imaging is magnetic susceptibility (denoted by χ). T2MRI outputs a complex-valued MR image consisting of magnitude and phase information. Recent research has shown that both the magnitude and the phase images are morphologically different from the source χ, primarily due to 3D convolution, and that the source χ can be reconstructed from complex MR images by computed inverse MRI (CIMRI). Thus, we can obtain a 4D χ dataset from a complex 4D MR dataset acquired from a brain functional MRI study by repeating CIMRI to reconstruct 3D χ volumes at each timepoint. Because the reconstructed χ is a more direct representation of neuronal activity than the MR image, we propose a method for χ-based functional brain mapping, which is numerically characterised by a temporal correlation map of χ responses to a stimulant task. Under the linear imaging conditions used for T2*MRI, we show that the χ activation map can be calculated from the MR phase map by CIMRI. We validate our approach using numerical simulations and Gd-phantom experiments. We also analyse real data from a finger-tapping visuomotor experiment and show that the χ-based functional mapping provides additional activation details (in the form of positive and negative correlation patterns) beyond those generated by conventional MR-magnitude-based mapping.

摘要

用于脑成像的 T2*-加权磁共振成像(T2MRI)的潜在来源是磁化率(用 χ 表示)。T2MRI 输出一个由幅度和相位信息组成的复值 MR 图像。最近的研究表明,幅度和相位图像都与源 χ 在形态上有所不同,主要是由于 3D 卷积,并且可以通过计算逆磁共振(CIMRI)从复 MR 图像重建源 χ。因此,我们可以通过重复 CIMRI 来重建每个时间点的 3D χ 体积,从脑功能磁共振成像研究中获得的复杂 4D MR 数据集获得 4D χ 数据集。由于重建的 χ 比 MR 图像更直接地表示神经元活动,因此我们提出了一种基于 χ 的功能脑映射方法,该方法通过 χ 响应刺激任务的时间相关图进行数值特征化。在用于 T2*MRI 的线性成像条件下,我们表明可以通过 CIMRI 从 MR 相位图计算 χ 激活图。我们使用数值模拟和 Gd 体模实验验证了我们的方法。我们还分析了来自手指敲击视觉运动实验的真实数据,并表明基于 χ 的功能映射除了基于常规 MR 幅度映射生成的那些之外,还提供了附加的激活细节(以正相关和负相关模式的形式)。

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