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使用扩散方向变换(DOT)解析复杂组织微结构

Resolution of complex tissue microarchitecture using the diffusion orientation transform (DOT).

作者信息

Ozarslan Evren, Shepherd Timothy M, Vemuri Baba C, Blackband Stephen J, Mareci Thomas H

机构信息

Department of Computer and Information Science and Engineering, University of Florida, P.O. Box 116120, Gainesville, FL 32611, USA.

出版信息

Neuroimage. 2006 Jul 1;31(3):1086-103. doi: 10.1016/j.neuroimage.2006.01.024. Epub 2006 Mar 20.

Abstract

This article describes an accurate and fast method for fiber orientation mapping using multidirectional diffusion-weighted magnetic resonance (MR) data. This novel approach utilizes the Fourier transform relationship between the water displacement probabilities and diffusion-attenuated MR signal expressed in spherical coordinates. The radial part of the Fourier integral is evaluated analytically under the assumption that MR signal attenuates exponentially. The values of the resulting functions are evaluated at a fixed distance away from the origin. The spherical harmonic transform of these functions yields the Laplace series coefficients of the probabilities on a sphere of fixed radius. Alternatively, probability values can be computed nonparametrically using Legendre polynomials. Orientation maps calculated from excised rat nervous tissue data demonstrate this technique's ability to accurately resolve crossing fibers in anatomical regions such as the optic chiasm. This proposed methodology has a trivial extension to multiexponential diffusion-weighted signal decay. The developed methods will improve the reliability of tractography schemes and may make it possible to correctly identify the neural connections between functionally connected regions of the nervous system.

摘要

本文描述了一种使用多向扩散加权磁共振(MR)数据进行纤维取向映射的准确且快速的方法。这种新方法利用了球坐标中水流位移概率与扩散衰减MR信号之间的傅里叶变换关系。在MR信号呈指数衰减的假设下,对傅里叶积分的径向部分进行解析评估。所得函数的值在距原点固定距离处进行评估。这些函数的球谐变换产生固定半径球面上概率的拉普拉斯级数系数。或者,可以使用勒让德多项式非参数地计算概率值。根据切除的大鼠神经组织数据计算出的取向图证明了该技术在诸如视交叉等解剖区域中准确分辨交叉纤维的能力。所提出的方法很容易扩展到多指数扩散加权信号衰减。所开发的方法将提高纤维束成像方案的可靠性,并可能使正确识别神经系统功能连接区域之间的神经连接成为可能。

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