首页> 外文期刊>Developmental cognitive neuroscience. >Load-related brain activation predicts spatial working memory performance in youth aged 9-12 and is associated with executive function at earlier ages
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Load-related brain activation predicts spatial working memory performance in youth aged 9-12 and is associated with executive function at earlier ages

机译:与负荷有关的大脑激活可预测9-12岁青年的空间工作记忆表现,并与较早年龄的执行功能相关

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Spatial working memory is a central cognitive process that matures through adolescence in conjunction with major changes in brain function and anatomy. Here we focused on late childhood and early adolescence to more closely examine the neural correlates of performance variability during this important transition period. Using a modified spatial 1-back task with two memory load conditions in an fMRI study, we examined the relationship between load-dependent neural responses and task performance in a sample of 39 youth aged 9-12 years. Our data revealed that between-subject differences in task performance was predicted by load-dependent deactivation in default network regions, including the ventral anterior cingulate cortex (vACC) and posterior cingulate cortex (PCC). Although load-dependent increases in activation in prefrontal and posterior parietal regions were only weakly correlated with performance, increased prefrontal-parietal coupling was associated with better performance. Furthermore, behavioral measures of executive function from as early as age 3 predicted current load-dependent deactivation in vACC and PCC. These findings suggest that both task positive and task negative brain activation during spatial working memory contributed to successful task performance in late childhood/early adolescence. This may serve as a good model for studying executive control deficits in developmental disorders.
机译:空间工作记忆是一个中央认知过程,通过青春期以及大脑功能和解剖结构的重大变化而成熟。在这里,我们专注于儿童晚期和青春期,以更仔细地检查在这个重要过渡时期内表现变化的神经相关性。在一项功能磁共振成像研究中,使用具有两个记忆负荷条件的改良空间1-后背任务,我们在39名9-12岁的青年样本中研究了负荷依赖性神经反应与任务表现之间的关系。我们的数据显示,任务性能的受试者间差异是通过默认网络区域(包括腹侧前扣带回皮层(vACC)和后扣带回皮层(PCC))中依赖于负载的失活来预测的。尽管前额壁和后壁区域激活的负荷依赖性增加与性能之间的相关性很弱,但是前额壁-壁间耦合的增加与更好的性能相关。此外,早在3岁时执行功能的行为指标就可以预测vACC和PCC中当前的负荷依赖性失活。这些发现表明,在空间工作记忆期间,任务阳性和任务阴性的大脑激活都有助于在儿童晚期/青春期成功完成任务。这可能是研究发育障碍中执行控制缺陷的良好模型。

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