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球坐标下q空间的数学描述:精确q球成像

Mathematical description of q-space in spherical coordinates: exact q-ball imaging.

作者信息

Canales-Rodríguez Erick Jorge, Melie-García Lester, Iturria-Medina Yasser

机构信息

Neuroimaging Department, Cuban Neuroscience Center, Havana, Cuba.

出版信息

Magn Reson Med. 2009 Jun;61(6):1350-67. doi: 10.1002/mrm.21917.

Abstract

Novel methodologies have been recently developed to characterize the microgeometry of neural tissues and porous structures via diffusion MRI data. In line with these previous works, this article provides a detailed mathematical description of q-space in spherical coordinates that helps to highlight the differences and similarities between various related q-space methodologies proposed to date such as q-ball imaging (QBI), diffusion spectrum imaging (DSI), and diffusion orientation transform imaging (DOT). This formulation provides a direct relationship between the orientation distribution function (ODF) and the diffusion data without using any approximation. Under this relationship, the exact ODF can be computed by means of the Radon transform of the radial projection (in q-space) of the diffusion MRI signal. This new methodology, termed exact q-ball imaging (EQBI), was put into practice using an analytical ODF estimation in terms of spherical harmonics that allows obtaining model-free and model-based reconstructions. This work provides a new framework for combining information coming from diffusion data recorded on multiple spherical shells in q-space (hybrid diffusion imaging encoding scheme), which is capable of mapping ODF to a high accuracy. This represents a step toward a more efficient development of diffusion MRI experiments for obtaining better ODF estimates.

摘要

最近已经开发出了新的方法,通过扩散磁共振成像(MRI)数据来表征神经组织和多孔结构的微观几何形状。与之前的这些工作一致,本文提供了球坐标下q空间的详细数学描述,有助于突出迄今为止提出的各种相关q空间方法(如q球成像(QBI)、扩散谱成像(DSI)和扩散方向变换成像(DOT))之间的异同。这种公式化表达在不使用任何近似的情况下,提供了方向分布函数(ODF)与扩散数据之间的直接关系。在这种关系下,可以通过扩散MRI信号的径向投影(在q空间中)的拉东变换来计算精确的ODF。这种新方法被称为精确q球成像(EQBI),它通过基于球谐函数的解析ODF估计得以实践,从而能够获得无模型和基于模型的重建。这项工作为组合来自q空间中多个球壳上记录的扩散数据的信息(混合扩散成像编码方案)提供了一个新框架,该框架能够高精度地映射ODF。这代表了朝着更高效地开展扩散MRI实验以获得更好的ODF估计迈出的一步。

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