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Working Memory Load-Dependent Brain Response Predicts Behavioral Training Gains in Older Adults

机译:依赖于工作记忆负荷的脑反应可预测老年人的行为训练收益

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摘要

In the domain of working memory (WM), a sigmoid-shaped relationship between WM load and brain activation patterns has been demonstrated in younger adults. It has been suggested that age-related alterations of this pattern are associated with changes in neural efficiency and capacity. At the same time, WM training studies have shown that some older adults are able to increase their WM performance through training. In this study, functional magnetic resonance imaging during an n-back WM task at different WM load levels was applied to compare blood oxygen level-dependent (BOLD) responses between younger and older participants and to predict gains in WM performance after a subsequent 12-session WM training procedure in older adults. We show that increased neural efficiency and capacity, as reflected by more “youth-like” brain response patterns in regions of interest of the frontoparietal WM network, were associated with better behavioral training outcome beyond the effects of age, sex, education, gray matter volume, and baseline WM performance. Furthermore, at low difficulty levels, decreases in BOLD response were found after WM training. Results indicate that both neural efficiency (i.e., decreased activation at comparable performance levels) and capacity (i.e., increasing activation with increasing WM load) of a WM-related network predict plasticity of the WM system, whereas WM training may specifically increase neural efficiency in older adults.
机译:在工作记忆(WM)领域,已在年轻成年人中证明了WM负荷与大脑激活模式之间呈S形关系。已经提出,这种模式的与年龄有关的改变与神经效率和能力的改变有关。同时,WM培训研究表明,一些老年人能够通过培训提高其WM绩效。在这项研究中,应用了在不同WM负荷水平下进行n背部WM任务期间的功能磁共振成像,以比较年轻参与者和老年参与者之间血氧水平依赖性(BOLD)反应,并预测随后的12-老年人的WM培训课程。我们显示,增加的神经效率和能力,如额叶前WM网络感兴趣的区域中更多的“青年式”大脑反应模式所反映,与年龄,性别,教育,灰质的影响相比,具有更好的行为训练结果数量和基线WM性能。此外,在低难度水平下,在WM训练后发现BOLD反应降低。结果表明,与WM相关的网络的神经效率(即,在可比较的性能水平下降低的激活)和容量(即,随着WM负载的增加而增加的激活)都可以预测WM系统的可塑性,而WM训练可以专门提高WM系统的神经效率。老年人。

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