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一项关于延迟匹配样本任务中编码、维持和检索阶段基础神经网络的事件相关功能磁共振成像研究。

An event-related fMRI study of the neural networks underlying the encoding, maintenance, and retrieval phase in a delayed-match-to-sample task.

作者信息

Habeck Christian, Rakitin Brian C, Moeller James, Scarmeas Nikolaos, Zarahn Eric, Brown Truman, Stern Yaakov

机构信息

Cognitive Neuroscience Division of the Taub Institute for Research in Alzheimer's disease and the Aging Brain, 622 West 168th Street, PH-18, New York, NY 10032, USA.

出版信息

Brain Res Cogn Brain Res. 2005 May;23(2-3):207-20. doi: 10.1016/j.cogbrainres.2004.10.010. Epub 2004 Dec 9.

Abstract

Memory loads exceeding the limited capacity of working memory (WM) have been shown to expand the prefrontal areas that participate in WM and have revealed substantial individual differences in performance. We used a delayed-match-to-sample (DMS) task in an event-related fMRI study to map the full extent of the expanded regional activations associated with supracapacity loads. A 6-letter study array was compared to arrays of 1 and 3 letters. The task comprised separate encoding, retention, and retrieval fMRI epochs. A brain-wide spatial covariance analysis was applied to the data of all task epochs to identify patterns of correlated regional activations whose expression increased monotonically across 3 memory-load levels on a subject-by-subject basis. Such load-related activation patterns were in all task phases. Of greatest interest is the activation pattern that was obtained during the maintenance phase: increasing activation with memory load was found not only in the lateral PFC (BA 9,44) but also in the parietal lobe (BA 7,40), anterior cingulate (BA 32), and cerebellum. Decreasing activation was found in the occipito-temporal lobe (BA 19,39) as well as the medial prefrontal cortex (BA 9,10). Subject increases in pattern expression from 1 to 6 items were positively correlated with the corresponding reaction time increases (p<0.05) and negatively correlated with NARTIQ (p<0.05), indicating that people who were faster in their responses and had higher NARTIQ had to increase their subject expression of the memory-load-related activation pattern less and were more efficient at the cognitive task. Our method thus not only reproduced findings of other WM studies but also addressed the issue of interactions between lateral PFC and other parts of the brain during the task, for the retention of the to-be-remembered information. The load-related activation patterns from encoding and retrieval phase and their relationship to behavior are also discussed.

摘要

研究表明,超出工作记忆(WM)有限容量的记忆负荷会扩大参与工作记忆的前额叶区域,并揭示出表现上的显著个体差异。我们在一项事件相关功能磁共振成像(fMRI)研究中使用延迟匹配样本(DMS)任务,以描绘与超容量负荷相关的扩大区域激活的全貌。将一个6字母的研究阵列与1字母和3字母的阵列进行比较。该任务包括单独的编码、保持和检索fMRI时期。对所有任务时期的数据进行全脑空间协方差分析,以识别相关区域激活的模式,这些模式的表达在逐个受试者的基础上,随着3个记忆负荷水平单调增加。这种与负荷相关的激活模式在所有任务阶段都存在。最令人感兴趣的是在维持阶段获得的激活模式:不仅在外侧前额叶皮质(BA 9、44),而且在顶叶(BA 7、40)、前扣带回(BA 32)和小脑中发现随着记忆负荷增加而激活增加。在枕颞叶(BA 19、39)以及内侧前额叶皮质(BA 9、10)中发现激活减少。受试者从1项到6项模式表达的增加与相应的反应时间增加呈正相关(p<0.05),与NARTIQ呈负相关(p<0.05),这表明反应更快且NARTIQ更高的人,其与记忆负荷相关的激活模式的受试者表达增加较少,并且在认知任务中更有效率。因此,我们的方法不仅重现了其他工作记忆研究的结果,还解决了在任务期间外侧前额叶皮质与大脑其他部分之间的相互作用问题,以便保留要记忆的信息。还讨论了编码和检索阶段与负荷相关的激活模式及其与行为的关系。

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