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Q球成像

Q-ball imaging.

作者信息

Tuch David S

机构信息

Athinoula A Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Charlestown 02129, USA.

出版信息

Magn Reson Med. 2004 Dec;52(6):1358-72. doi: 10.1002/mrm.20279.

Abstract

Magnetic resonance diffusion tensor imaging (DTI) provides a powerful tool for mapping neural histoarchitecture in vivo. However, DTI can only resolve a single fiber orientation within each imaging voxel due to the constraints of the tensor model. For example, DTI cannot resolve fibers crossing, bending, or twisting within an individual voxel. Intravoxel fiber crossing can be resolved using q-space diffusion imaging, but q-space imaging requires large pulsed field gradients and time-intensive sampling. It is also possible to resolve intravoxel fiber crossing using mixture model decomposition of the high angular resolution diffusion imaging (HARDI) signal, but mixture modeling requires a model of the underlying diffusion process.Recently, it has been shown that the HARDI signal can be reconstructed model-independently using a spherical tomographic inversion called the Funk-Radon transform, also known as the spherical Radon transform. The resulting imaging method, termed q-ball imaging, can resolve multiple intravoxel fiber orientations and does not require any assumptions on the diffusion process such as Gaussianity or multi-Gaussianity. The present paper reviews the theory of q-ball imaging and describes a simple linear matrix formulation for the q-ball reconstruction based on spherical radial basis function interpolation. Open aspects of the q-ball reconstruction algorithm are discussed.

摘要

磁共振扩散张量成像(DTI)为在体内绘制神经组织架构提供了一个强大的工具。然而,由于张量模型的限制,DTI在每个成像体素内只能分辨出单一的纤维方向。例如,DTI无法分辨单个体素内交叉、弯曲或扭曲的纤维。可以使用q空间扩散成像来分辨体素内纤维交叉,但q空间成像需要大的脉冲场梯度和耗时的采样。也可以使用高角分辨率扩散成像(HARDI)信号的混合模型分解来分辨体素内纤维交叉,但混合建模需要一个潜在扩散过程的模型。最近,研究表明,可以使用一种称为Funk-Radon变换(也称为球面Radon变换)的球面断层反演来独立于模型重建HARDI信号。由此产生的成像方法称为q球成像,它可以分辨多个体素内纤维方向,并且不需要对扩散过程做任何假设,如高斯性或多高斯性。本文回顾了q球成像的理论,并描述了一种基于球面径向基函数插值的q球重建的简单线性矩阵公式。讨论了q球重建算法的开放问题。

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