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Age-Related Structural Alterations in Human Amygdala Networks: Reflections on Correlations Between White Matter Structure and Effective Connectivity

机译:人类杏仁核网络中与年龄相关的结构改变:关于白色物质结构和有效连接性之间相关性的思考

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摘要

The amygdala, which is involved in human social information processing and socio-emotional response neuronal circuits, is segmented into three subregions that are responsible for perception, affiliation, and aversion. Though there is different functional and effective connectivity (EC) among these networks, age-related structural changes and associations between structure and function within the amygdala remain unclear. Here, we used diffusion tensor imaging (DTI) data (106 participants) to investigate age-related structural changes in fractional anisotropy (FA) of amygdalar subregions. We also examined the relationship between FA and EC within the subregions. We found that the FA of the amygdalar subregions exhibited inverted-U-shape trends with age. Moreover, over the human lifespan, there were negative correlations between the FA of the right ventrolateral amygdala (VLA.R) and the Granger-based EC (GC) of VLA.R → perception network (PerN), the FA of the VLA.R and the GC of the net flow from VLA.R → PerN, and the FA of the left dorsal amygdala (DorA.L) and the GC of the aversion network (AveN). Conversely, there was a positive correlation between the FA of the DorA.L and the GC of the net flow from DorA.L → AveN. Our results suggest that age-related changes in the function of the brain are constrained by the underlying white matter architectures, while the functional information flow changes influence white matter structure. This work increases our understanding of the neuronal mechanisms in the maturation and aging process.
机译:扁桃体参与人类社会信息处理和社会情感反应神经元回路,分为三个亚区域,分别负责感知,隶属关系和厌恶。尽管这些网络之间存在不同的功能和有效连接性(​​EC),但杏仁核内部与年龄相关的结构变化以及结构与功能之间的关联仍然不清楚。在这里,我们使用扩散张量成像(DTI)数据(106名参与者)来研究杏仁体亚区域的分数各向异性(FA)中与年龄相关的结构变化。我们还研究了次区域内FA和EC之间的关系。我们发现杏仁核亚区的FA随着年龄的增长呈现倒U型趋势。此外,在人类的寿命中,右腹外侧杏仁核(VLA.R)的FA与VLA.R→感知网络(PerN)的Granger-based EC(GC)之间存在负相关。 R和来自VLA.R→PerN的净流量的GC,以及左背杏仁核的FA(DorA.L)和厌恶网络的GC(AveN)。相反,DorA.L的FA与来自DorA.L→AveN的净流量的GC之间存在正相关。我们的研究结果表明,与年龄相关的大脑功能变化受到潜在的白质结构的限制,而功能信息流的变化影响白质结构。这项工作增加了我们对成熟和衰老过程中神经元机制的了解。

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