Suppr超能文献

健康认知正常成年人脑组织脑脊液分数与年龄的关联

Association of brain tissue cerebrospinal fluid fraction with age in healthy cognitively normal adults.

作者信息

Zhou Liangdong, Li Yi, Sweeney Elizabeth M, Wang Xiuyuan H, Kuceyeski Amy, Chiang Gloria C, Ivanidze Jana, Wang Yi, Gauthier Susan A, de Leon Mony J, Nguyen Thanh D

机构信息

Department of Radiology, Weill Cornell Medicine, New York, NY, United States.

Penn Statistics in Imaging and Visualization Endeavor (PennSIVE), Department of Biostatistics and Epidemiology, University of Pennsylvania, Philadelphia, PA, United States.

出版信息

Front Aging Neurosci. 2023 Jun 16;15:1162001. doi: 10.3389/fnagi.2023.1162001. eCollection 2023.

Abstract

BACKGROUND AND PURPOSE

Our objective was to apply multi-compartment T2 relaxometry in cognitively normal individuals aged 20-80 years to study the effect of aging on the parenchymal CSF fraction (CSFF), a potential measure of the subvoxel CSF space.

MATERIALS AND METHODS

A total of 60 volunteers (age range, 22-80 years) were enrolled. Voxel-wise maps of short-T2 myelin water fraction (MWF), intermediate-T2 intra/extra-cellular water fraction (IEWF), and long-T2 CSFF were obtained using fast acquisition with spiral trajectory and adiabatic T2prep (FAST-T2) sequence and three-pool non-linear least squares fitting. Multiple linear regression analyses were performed to study the association between age and regional MWF, IEWF, and CSFF measurements, adjusting for sex and region of interest (ROI) volume. ROIs include the cerebral white matter (WM), cerebral cortex, and subcortical deep gray matter (GM). In each model, a quadratic term for age was tested using an ANOVA test. A Spearman's correlation between the normalized lateral ventricle volume, a measure of organ-level CSF space, and the regional CSFF, a measure of tissue-level CSF space, was computed.

RESULTS

Regression analyses showed that there was a statistically significant quadratic relationship with age for CSFF in the cortex ( = 0.018), MWF in the cerebral WM ( = 0.033), deep GM ( = 0.017) and cortex ( = 0.029); and IEWF in the deep GM ( = 0.033). There was a statistically highly significant positive linear relationship between age and regional CSFF in the cerebral WM ( < 0.001) and deep GM ( < 0.001). In addition, there was a statistically significant negative linear association between IEWF and age in the cerebral WM ( = 0.017) and cortex ( < 0.001). In the univariate correlation analysis, the normalized lateral ventricle volume correlated with the regional CSFF measurement in the cerebral WM (ρ = 0.64, < 0.001), cortex (ρ = 0.62, < 0.001), and deep GM (ρ = 0.66, < 0.001).

CONCLUSION

Our cross-sectional data demonstrate that brain tissue water in different compartments shows complex age-dependent patterns. Parenchymal CSFF, a measure of subvoxel CSF-like water in the brain tissue, is quadratically associated with age in the cerebral cortex and linearly associated with age in the cerebral deep GM and WM.

摘要

背景与目的

我们的目标是对年龄在20 - 80岁的认知正常个体应用多室T2弛豫测量法,以研究衰老对脑实质脑脊液分数(CSFF)的影响,CSFF是一种潜在的亚体素脑脊液空间测量指标。

材料与方法

共招募了60名志愿者(年龄范围22 - 80岁)。使用螺旋轨迹快速采集和绝热T2预脉冲(FAST - T2)序列及三池非线性最小二乘法拟合,获取短T2髓鞘水分数(MWF)、中T2细胞内/外水分数(IEWF)和长T2 CSFF的体素图。进行多元线性回归分析,以研究年龄与区域MWF、IEWF和CSFF测量值之间的关联,并对性别和感兴趣区域(ROI)体积进行校正。ROI包括脑白质(WM)、大脑皮层和皮质下深部灰质(GM)。在每个模型中,使用方差分析检验年龄的二次项。计算标准化侧脑室体积(一种器官水平脑脊液空间的测量指标)与区域CSFF(一种组织水平脑脊液空间的测量指标)之间的Spearman相关性。

结果

回归分析表明,皮质中CSFF与年龄存在统计学显著的二次关系( = 0.018),脑WM( = 0.033)、深部GM( = 0.017)和皮质( = 0.029)中的MWF与年龄存在统计学显著的二次关系;深部GM中的IEWF与年龄存在统计学显著的二次关系( = 0.033)。脑WM( < 0.001)和深部GM( < 0.001)中年龄与区域CSFF之间存在统计学高度显著的正线性关系。此外,脑WM( = 0.017)和皮质( < 0.001)中IEWF与年龄存在统计学显著的负线性关联。在单变量相关性分析中,标准化侧脑室体积与脑WM(ρ = 0.64, < 0.001)、皮质(ρ = 0.62, < 0.001)和深部GM(ρ = 0.66, < 0.001)中的区域CSFF测量值相关。

结论

我们的横断面数据表明,不同脑区的脑组织水呈现出复杂的年龄依赖性模式。脑实质CSFF作为脑组织中亚体素脑脊液样水的一种测量指标,在大脑皮层中与年龄呈二次相关,在脑深部GM和WM中与年龄呈线性相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71e3/10312090/d6b46a2502d9/fnagi-15-1162001-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验