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Age-related increase in brain activity during task-related and -negative networks and numerical inductive reasoning

机译:与任务相关和负向网络以及数字归纳推理过程中与年龄相关的大脑活动增加

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Objective: Recent neuroimaging studies have shown that elderly adults exhibit increased and decreased activation on various cognitive tasks, yet little is known about age-related changes in inductive reasoning. Methods: To investigate the neural basis for the aging effect on inductive reasoning, 15 young and 15 elderly subjects performed numerical inductive reasoning while in a magnetic resonance (MR) scanner. Results: Functional magnetic resonance imaging (fMRI) analysis revealed that numerical inductive reasoning, relative to rest, yielded multiple frontal, temporal, parietal, and some subcortical area activations for both age groups. In addition, the younger participants showed significant regions of task-induced deactivation, while no deactivation occurred in the elderly adults. Direct group comparisons showed that elderly adults exhibited greater activity in regions of task-related activation and areas showing task-induced deactivation (TID) in the younger group. Conclusions: Our findings suggest an age-related deficiency in neural function and resource allocation during inductive reasoning.
机译:目的:最近的神经影像学研究表明,老年人在各种认知任务中表现出增加和减少的激活,但关于归纳推理中与年龄相关的变化知之甚少。方法:为了研究衰老对归纳推理的影响的神经基础,在磁共振(MR)扫描仪中,对15位年轻和15位老年受试者进行了数值归纳推理。结果:功能磁共振成像(fMRI)分析显示,相对于休息,数字归纳推理在两个年龄组均产生多个额叶,颞叶,顶叶和一些皮质下区域激活。此外,年轻的参与者显示出任务诱导的失活的重要区域,而在老年人中未发生失活。直接的组比较显示,在较年轻的组中,老年人在与任务相关的激活区域表现出更大的活动,而在任务相关的激活区域(TID)表现出更大的活动。结论:我们的发现表明归纳推理过程中神经功能和资源分配存在年龄相关性缺陷。

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