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Growing Together and Growing Apart: Regional and Sex Differences in the Lifespan Developmental Trajectories of Functional Homotopy

机译:共同成长与独立成长:功能同伦型生命发展轨迹的区域和性别差异

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摘要

Functional homotopy, the high degree of synchrony in spontaneous activity between geometrically corresponding interhemispheric (i.e., homotopic) regions, is a fundamental characteristic of the intrinsic functional architecture of the brain. However, despite its prominence, the lifespan development of the homotopic resting-state functional connectivity (RSFC) of the human brain is rarely directly examined in functional magnetic resonance imaging studies. Here, we systematically investigated age-related changes in homotopic RSFC in 214 healthy individuals ranging in age from 7 to 85 years. We observed marked age-related changes in homotopic RSFC with regionally specific developmental trajectories of varying levels of complexity. Sensorimotor regions tended to show increasing homotopic RSFC, whereas higher-order processing regions showed decreasing connectivity (i.e., increasing segregation) with age. More complex maturational curves were also detected, with regions such as the insula and lingual gyrus exhibiting quadratic trajectories and the superior frontal gyrus and putamen exhibiting cubic trajectories. Sex-related differences in the developmental trajectory of functional homotopy were detected within dorsolateral prefrontal cortex (Brodmann areas 9 and 46) and amygdala. Evidence of robust developmental effects in homotopic RSFC across the lifespan should serve to motivate studies of the physiological mechanisms underlying functional homotopy in neurodegenerative and psychiatric disorders.
机译:功能上的同质性是在几何上相对应的半球形(即同位)区域之间自发活动的高度同步性,是大脑固有功能结构的基本特征。然而,尽管其突出,但在功能磁共振成像研究中很少直接检查人脑的同位静止状态功能连通性(RSFC)的寿命发展。在这里,我们系统地研究了年龄在7至85岁之间的214名健康个体的同位RSFC的年龄相关变化。我们观察到同位RSFC中与年龄相关的显着变化,以及复杂性不同的区域特定发展轨迹。感觉运动区域倾向于显示出同位的RSFC增加,而高阶加工区域则显示随着年龄的增长而降低的连通性(即,增加的隔离)。还检测到更复杂的成熟曲线,诸如岛状和舌状回等区域表现出二次轨迹,而额额上回和壳状上等表现出三次轨迹。在背外侧前额叶皮层(Brodmann区域9和46)和杏仁核中检测到功能性同型异体发育轨迹的性别相关差异。在整个生命周期中,同位RSFC中强大的发育效应的证据应有助于激发对神经退行性疾病和精神疾病中功能同位的潜在生理机制的研究。

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