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Session II: Mechanisms of Age-Related Cognitive Change and Targets for Intervention: Neural Circuits, Networks, and Plasticity.

机译:第二节:与年龄有关的认知变化的机制和干预目标:神经回路,网络和可塑性。

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Age-related changes in neural circuits, neural networks, and their plasticity are central to our understanding of age changes in cognition and brain structure and function. This paper summarizes selected findings on these topics presented at the Cognitive Aging Summit II. Specific areas discussed were synaptic vulnerability and plasticity, including the role of different types of synaptic spines, and hormonal effects in the dorsolateral prefrontal cortex of nonhuman primates, the impact of both compensatory processes and dedifferentiation on demand-dependent differences in prefrontal activation in relation to age and performance, the role of vascular disease, indexed by white matter signal abnormalities, on prefrontal activation during a functional magnetic resonance imaging-based cognitive control paradigm, and the influence of amyloid-β neuropathology on memory performance in older adults and the networks of brain activity underlying variability in performance. A greater understanding of age-related changes in brain plasticity and neural networks in healthy aging and in the presence of underlying vascular disease or amyloid pathology will be essential to identify new targets for intervention. Moreover, this understanding will assist in promoting the utilization of existing interventions, such as lifestyle and therapeutic modifiers of vascular disease.
机译:与年龄有关的神经回路,神经网络及其可塑性的变化对于我们了解认知,大脑结构和功能的年龄变化至关重要。本文总结了在第二届认知老龄化峰会上提出的关于这些主题的部分发现。讨论的具体领域是突触的脆弱性和可塑性,包括不同类型的突触棘突的作用,以及非人类灵长类动物在背外侧前额叶皮层中的激素作用,补偿过程和去分化对前额叶激活相关的需求依赖性差异的影响。年龄和性能,以白质信号异常为指标的血管疾病在基于功能性磁共振成像的认知控制范例中对前额叶激活的作用,以及淀粉样β神经病理学对老年人和老年人网络记忆功能的影响大脑活动是表现变化的基础。在确定健康的新陈代谢以及存在潜在的血管疾病或淀粉样蛋白病理的情况下,对大脑可塑性和神经网络中与年龄相关的变化的更多了解对于确定新的干预目标至关重要。此外,这种理解将有助于促进利用现有干预措施,例如生活方式和血管疾病的治疗修饰剂。

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