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双脉冲场梯度磁共振显示的组织间隙形状各向异性(CSA)

Compartment shape anisotropy (CSA) revealed by double pulsed field gradient MR.

作者信息

Ozarslan Evren

机构信息

Section on Tissue Biophysics and Biomimetics, NICHD, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Magn Reson. 2009 Jul;199(1):56-67. doi: 10.1016/j.jmr.2009.04.002. Epub 2009 Apr 10.

Abstract

The multiple scattering extensions of the pulsed field gradient (PFG) experiments can be used to characterize restriction-induced anisotropy at different length scales. In double-PFG acquisitions that involve two pairs of diffusion gradient pulses, the dependence of the MR signal attenuation on the angle between the two gradients is a signature of restriction that can be observed even at low gradient strengths. In this article, a comprehensive theoretical treatment of the double-PFG observation of restricted diffusion is presented. In the first part of the article, the problem is treated for arbitrarily shaped pores under idealized experimental conditions, comprising infinitesimally narrow gradient pulses with long separation times and long or vanishing mixing times. New insights are obtained when the treatment is applied to simple pore shapes of spheres, ellipsoids, and capped cylinders. The capped cylinder geometry is considered in the second part of the article where the solution for a double-PFG experiment with arbitrary experimental parameters is introduced. Although compartment shape anisotropy (CSA) is emphasized here, the findings of this article can be used in gleaning the volume, eccentricity, and orientation distribution function associated with ensembles of anisotropic compartments using double-PFG acquisitions with arbitrary experimental parameters.

摘要

脉冲场梯度(PFG)实验的多次散射扩展可用于表征不同长度尺度下的限制诱导各向异性。在涉及两对扩散梯度脉冲的双PFG采集中,磁共振信号衰减对两个梯度之间角度的依赖性是限制的一个特征,即使在低梯度强度下也能观察到。本文对受限扩散的双PFG观测进行了全面的理论探讨。在文章的第一部分,针对理想化实验条件下任意形状的孔隙处理该问题,包括具有长间隔时间和长或消失混合时间的无限窄梯度脉冲。当将该处理应用于球体、椭球体和带帽圆柱体等简单孔隙形状时,可获得新的见解。文章的第二部分考虑了带帽圆柱体几何形状,其中引入了具有任意实验参数的双PFG实验的解决方案。尽管这里强调了隔室形状各向异性(CSA),但本文的研究结果可用于通过具有任意实验参数的双PFG采集来获取与各向异性隔室集合相关的体积、偏心率和取向分布函数。

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