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The Optical Effective Attenuation Coefficient as an Informative Measure of Brain Health in Aging

机译:光学有效衰减系数作为衰老时脑部健康的信息量度

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Aging is accompanied by widespread changes in brain tissue. Here, we hypothesized that head tissue opacity to near-infrared light provides information about the health status of the brain’s cortical mantle. In diffusive media such as the head, opacity is quantified through the Effective Attenuation Coefficient (EAC), which is proportional to the geometric mean of the absorption and reduced scattering coefficients. EAC is estimated by the slope of the relationship between source–detector distance and the logarithm of the amount of light reaching the detector (optical density). We obtained EAC maps across the head in 47 adults (age range 18–75 years), using a high-density dual-wavelength optical system. We correlated regional and global EAC measures with demographic, neuropsychological, structural and functional brain data. Results indicated that EAC values averaged across wavelengths were strongly associated with age-related changes in cortical thickness, as well as functional and neuropsychological measures. This is likely because the EAC largely depends on the thickness of the sub-arachnoid cerebrospinal fluid layer, which increases with cortical atrophy. In addition, differences in EAC values between wavelengths were correlated with tissue oxygenation and cardiorespiratory fitness, indicating that information about cortical health can be derived non-invasively by quantifying the EAC.
机译:衰老伴随着脑组织的广泛变化。在这里,我们假设头部组织对近红外光的不透明性提供了有关大脑皮层外套的健康状况的信息。在诸如头部之类的扩散介质中,不透明度是通过有效衰减系数(EAC)来量化的,该系数与吸收的几何平均值和减小的散射系数成正比。 EAC通过源-探测器距离与到达探测器的光量(光学密度)的对数之间的关系的斜率来估算。我们使用高密度双波长光学系统获得了47位成年人(年龄在18-75岁之间)的EAC头图。我们将区域和全球EAC度量与人口统计,神经心理学,结构和功能性大脑数据相关联。结果表明,跨波长平均的EAC值与年龄相关的皮层厚度变化以及功能和神经心理学指标密切相关。这可能是因为EAC在很大程度上取决于蛛网膜下脑脊髓液层的厚度,该厚度随皮质萎缩而增加。此外,波长之间的EAC值差异与组织氧合作用和心肺功能适应性相关,表明有关皮质健康的信息可以通过对EAC进行定量来无创地获得。

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