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通过多次激发高分辨率扩散张量成像检测正常衰老过程中的皮质下白质变化

Subcortical White Matter Changes with Normal Aging Detected by Multi-Shot High Resolution Diffusion Tensor Imaging.

作者信息

Xie Sheng, Zhang Zhe, Chang Feiyan, Wang Yishi, Zhang Zhenxia, Zhou Zhenyu, Guo Hua

机构信息

Department of Radiology, China-Japan Friendship Hospital, Beijing, China.

Center for Biomedical Imaging Research, Department of Biomedical Engineering, Tsinghua University, Beijing, China.

出版信息

PLoS One. 2016 Jun 22;11(6):e0157533. doi: 10.1371/journal.pone.0157533. eCollection 2016.

Abstract

Subcortical white matter builds neural connections between cortical and subcortical regions and constitutes the basis of neural networks. It plays a very important role in normal brain function. Various studies have shown that white matter deteriorates with aging. However, due to the limited spatial resolution provided by traditional diffusion imaging techniques, microstructural information from subcortical white matter with normal aging has not been comprehensively assessed. This study aims to investigate the deterioration effect with aging in the subcortical white matter and provide a baseline standard for pathological disorder diagnosis. We apply our newly developed multi-shot high resolution diffusion tensor imaging, using self-feeding multiplexed sensitivity-encoding, to measure subcortical white matter changes in regions of interest of healthy persons with a wide age range. Results show significant fractional anisotropy decline and radial diffusivity increasing with age, especially in the anterior part of the brain. We also find that subcortical white matter has more prominent changes than white matter close to the central brain. The observed changes in the subcortical white matter may be indicative of a mild demyelination and a loss of myelinated axons, which may contribute to normal age-related functional decline.

摘要

皮质下白质在皮质和皮质下区域之间建立神经连接,构成神经网络的基础。它在正常脑功能中起着非常重要的作用。各种研究表明,白质会随着年龄增长而退化。然而,由于传统扩散成像技术提供的空间分辨率有限,正常衰老的皮质下白质的微观结构信息尚未得到全面评估。本研究旨在调查皮质下白质随年龄增长的退化效应,并为病理紊乱诊断提供基线标准。我们应用新开发的多次激发高分辨率扩散张量成像技术,采用自馈多路复用灵敏度编码,来测量年龄范围广泛的健康人群感兴趣区域的皮质下白质变化。结果显示,随着年龄增长,分数各向异性显著下降,径向扩散率增加,尤其是在脑前部。我们还发现,皮质下白质的变化比靠近脑中部的白质变化更为显著。皮质下白质观察到的变化可能表明存在轻度脱髓鞘和有髓轴突丢失,这可能导致与年龄相关的正常功能衰退。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0aea/4917173/7202d92e5e83/pone.0157533.g001.jpg

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