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生理老化和萎缩对人类大脑粘弹性的影响。

The influence of physiological aging and atrophy on brain viscoelastic properties in humans.

机构信息

Department of Radiology, Charité-Universitätsmedizin Berlin, Campus Mitte, Berlin, Germany.

出版信息

PLoS One. 2011;6(9):e23451. doi: 10.1371/journal.pone.0023451. Epub 2011 Sep 12.

Abstract

Physiological aging of the brain is accompanied by ubiquitous degeneration of neurons and oligodendrocytes. An alteration of the cellular matrix of an organ impacts its macroscopic viscoelastic properties which can be detected by magnetic resonance elastography (MRE)--to date the only method for measuring brain mechanical parameters without intervention. However, the wave patterns detected by MRE are affected by atrophic changes in brain geometry occurring in an individual's life span. Moreover, regional variability in MRE-detected age effects is expected corresponding to the regional variation in atrophy. Therefore, the sensitivity of brain MRE to brain volume and aging was investigated in 66 healthy volunteers aged 18-72. A linear decline in whole-brain elasticity was observed (-0.75%/year, R-square = 0.59, p<0.001); the rate is three times that determined by volume measurements (-0.23%/year, R-square = 0.4, p<0.001). The highest decline in elasticity (-0.92%/year, R-square = 0.43, p<0.001) was observed in a region of interest placed in the frontal lobe with minimal age-related shrinkage (-0.1%, R-square = 0.06, p = 0.043). Our results suggest that cerebral MRE can measure geometry-independent viscoelastic parameters related to intrinsic tissue structure and altered by age.

摘要

大脑的生理老化伴随着神经元和少突胶质细胞的普遍退化。器官细胞基质的改变会影响其宏观粘弹性特性,这可以通过磁共振弹性成像(MRE)来检测——这是迄今为止唯一一种无需干预即可测量脑力学参数的方法。然而,MRE 检测到的波型受到个体寿命中脑几何形状萎缩变化的影响。此外,预计 MRE 检测到的年龄效应的区域变异性与萎缩的区域变异性相对应。因此,在 66 名年龄在 18-72 岁的健康志愿者中研究了脑 MRE 对脑容量和老化的敏感性。观察到整个大脑弹性呈线性下降(-0.75%/年,R 平方=0.59,p<0.001);这一速度是体积测量确定的速度的三倍(-0.23%/年,R 平方=0.4,p<0.001)。在感兴趣区域(ROI)中,弹性下降最大(-0.92%/年,R 平方=0.43,p<0.001),该 ROI 放置在额叶中,其与年龄相关的萎缩最小(-0.1%,R 平方=0.06,p=0.043)。我们的结果表明,大脑 MRE 可以测量与内在组织结构相关且受年龄影响的几何独立粘弹性参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/842a/3171401/b3117b5712ea/pone.0023451.g001.jpg

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