1 Pediatric Neuroimaging Research Consortium, Cincinnati Children's Hospital , Cincinnati, Ohio.
Brain Connect. 2014 May;4(4):273-85. doi: 10.1089/brain.2013.0190.
Comprehension of narrative stories plays an important role in the development of language skills. In this study, we compared brain activity elicited by a passive-listening version and an active-response (AR) version of a narrative comprehension task by using independent component (IC) analysis on functional magnetic resonance imaging data from 21 adolescents (ages 14-18 years). Furthermore, we explored differences in functional network connectivity engaged by two versions of the task and investigated the relationship between the online response time and the strength of connectivity between each pair of ICs. Despite similar brain region involvements in auditory, temporoparietal, and frontoparietal language networks for both versions, the AR version engages some additional network elements including the left dorsolateral prefrontal, anterior cingulate, and sensorimotor networks. These additional involvements are likely associated with working memory and maintenance of attention, which can be attributed to the differences in cognitive strategic aspects of the two versions. We found significant positive correlation between the online response time and the strength of connectivity between an IC in left inferior frontal region and an IC in sensorimotor region. An explanation for this finding is that longer reaction time indicates stronger connection between the frontal and sensorimotor networks caused by increased activation in adolescents who require more effort to complete the task.
叙事故事的理解在语言技能的发展中起着重要作用。在这项研究中,我们通过对 21 名青少年(年龄 14-18 岁)的功能磁共振成像数据进行独立成分(IC)分析,比较了被动聆听版和主动反应(AR)版叙事理解任务的大脑活动。此外,我们还探讨了两种任务版本所涉及的功能网络连接的差异,并研究了在线反应时间与每个 IC 对之间的连接强度之间的关系。尽管两种版本在听觉、颞顶叶和额顶叶语言网络中都涉及相似的大脑区域,但 AR 版本还涉及一些额外的网络元素,包括左背外侧前额叶、前扣带和感觉运动网络。这些额外的参与可能与工作记忆和注意力的维持有关,这可以归因于两种版本在认知策略方面的差异。我们发现在线反应时间与左额下回区域的 IC 与感觉运动区域的 IC 之间的连接强度之间存在显著正相关。对这一发现的解释是,反应时间越长,表明青少年在完成任务时需要更多的努力,导致额叶和感觉运动网络之间的连接越强。