大脑白质中的功能相关张量和正常衰老的影响。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-05 DOI:10.1007/s11682-024-00914-6
Lyuan Xu, Yurui Gao, Muwei Li, Richard Lawless, Yu Zhao, Kurt G Schilling, Baxter P Rogers, Adam W Anderson, Zhaohua Ding, Bennett A Landman, John C Gore
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摘要

来自白质(WM)体素的血液氧合水平依赖性(BOLD)核磁共振成像(MRI)信号之间的静息状态相关性具有明显的各向异性,因此功能相关张量(FCT)可用于量化白质束中BOLD效应的基本微观结构。然而,功能相关张量及其度量在特定人群中的总体空间分布尚未确定,影响其精确排列的因素仍不清楚。随着正常衰老,WM 会发生变化,这些变化可能会影响 FCTs。我们假设,FCTs 表现出一种特征性的空间模式,并可能随着衰老或其他因素而发生系统性变化。在此,我们报告了对461名认知正常受试者(190名女性,271名男性)的fMRI图像的FCT特征进行的分析,这些受试者来自开放获取系列成像研究(OASIS),年龄分布在42岁/o - 95岁/o之间。在JHU ICBM-DTI-81 WM图谱定义的WM束中,量化了FCT指数的组平均值和统计数据,包括轴向功能相关性、径向功能相关性、平均功能相关性和分数各向异性。此外,还研究了它们随正常衰老的变化。结果显示,随着年龄的增长,FCT 指标的变化呈双态分布,一些区域的功能相关性降低,而另一些区域的功能相关性升高。补充分析表明,女性在更多的 WM 区域表现出显著的年龄效应,但年龄与性别之间的交互作用并不显著。这些研究结果证明了FCT指标空间分布的可重复性,并揭示了随着年龄的增长各区域的微妙变化。
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Functional correlation tensors in brain white matter and the effects of normal aging.

Resting state correlations between blood oxygenation level dependent (BOLD) MRI signals from voxels in white matter (WM) are demonstrably anisotropic, so that functional correlation tensors (FCT) may be used to quantify the underlying microstructure of BOLD effects in WM tracts. However, the overall spatial distribution of FCTs and their metrics in specific populations has not yet been established, and the factors that affect their precise arrangements remain unclear. Changes in WM occur with normal aging, and these may be expected to affect FCTs. We hypothesized that FCTs exhibit a characteristic spatial pattern and may show systematic changes with aging or other factors. Here we report our analyses of the FCT characteristics of fMRI images of a large cohort of 461 cognitively normal subjects (190 females, 271 males) sourced from the Open Access Series of Imaging Studies (OASIS), with age distributions of 42 y/o - 95 y/o. Group averages and statistics of FCT indices, including axial functional correlations, radial functional correlations, mean functional correlations and fractional anisotropy, were quantified in WM bundles defined by the JHU ICBM-DTI-81 WM atlas. In addition, their variations with normal aging were examined. The results revealed a dimorphic distribution of changes in FCT metrics with age, with decreases of the functional correlations in some regions and increases in others. Supplementary analysis revealed that females exhibited significant age effects on a greater number of WM areas, but the interaction between age and sex was not significant. The findings demonstrate the reproducibility of the spatial distribution of FCT metrics and reveal subtle regional changes with age.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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