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扩散弥散成像:绘制人脑振荡梯度自旋回波频率依赖性图谱。

Diffusion dispersion imaging: Mapping oscillating gradient spin-echo frequency dependence in the human brain.

作者信息

Arbabi Aidin, Kai Jason, Khan Ali R, Baron Corey A

机构信息

Centre for Functional and Metabolic Mapping, Robarts Research Institute, Schulich School of Medicine & Dentistry, The University of Western Ontario, London, Ontario, Canada.

出版信息

Magn Reson Med. 2020 Jun;83(6):2197-2208. doi: 10.1002/mrm.28083. Epub 2019 Nov 25.

Abstract

PURPOSE

Oscillating gradient spin-echo (OGSE) diffusion MRI provides information about the microstructure of biological tissues by means of the frequency dependence of the apparent diffusion coefficient (ADC). ADC dependence on OGSE frequency has been explored in numerous rodent studies, but applications in the human brain have been limited and have suffered from low contrast between different frequencies, long scan times, and a limited exploration of the nature of the ADC dependence on frequency.

THEORY AND METHODS

Multiple frequency OGSE acquisitions were acquired in healthy subjects at 7T to explore the power-law frequency dependence of ADC, the "diffusion dispersion." Furthermore, a method for optimizing the estimation of the ADC difference between different OGSE frequencies was developed, which enabled the design of a highly efficient protocol for mapping diffusion dispersion.

RESULTS

For the first time, evidence of a linear dependence of ADC on the square root of frequency in healthy human white matter was obtained. Using the optimized protocol, high-quality, full-brain maps of apparent diffusion dispersion rate were also demonstrated at an isotropic resolution of 2 mm in a scan time of 6 min.

CONCLUSIONS

This work sheds light on the nature of diffusion dispersion in the healthy human brain and introduces full-brain diffusion dispersion mapping at clinically relevant scan times. These advances may lead to new biomarkers of pathology or improved microstructural modeling.

摘要

目的

振荡梯度自旋回波(OGSE)扩散磁共振成像通过表观扩散系数(ADC)的频率依赖性提供有关生物组织微观结构的信息。在众多啮齿动物研究中已对ADC对OGSE频率的依赖性进行了探索,但在人类大脑中的应用有限,且存在不同频率之间对比度低、扫描时间长以及对ADC频率依赖性本质的探索有限等问题。

理论与方法

在7T场强下对健康受试者进行多频率OGSE采集,以探索ADC的幂律频率依赖性,即“扩散色散”。此外,还开发了一种优化不同OGSE频率之间ADC差异估计的方法,这使得能够设计出一种高效的扩散色散映射方案。

结果

首次在健康人类白质中获得了ADC与频率平方根呈线性依赖关系的证据。使用优化后的方案,在6分钟的扫描时间内,以2毫米的各向同性分辨率也展示了高质量的全脑表观扩散色散率图谱。

结论

这项工作揭示了健康人类大脑中扩散色散的本质,并在临床相关扫描时间内引入了全脑扩散色散映射。这些进展可能会带来新的病理学生物标志物或改进的微观结构模型。

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