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Working memory contributes to the encoding of object location associations: Support for a 3-part model of object location memory

机译:工作内存有助于对象位置关联的编码:支持对象位置存储器的3部分模型

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A recent model by Postma and colleagues posits that the encoding of object location associations (OLAs) requires the coordination of several cognitive processes mediated by ventral (object perception) and dorsal (spatial perception) visual pathways as well as the hippocampus (feature binding) [1]. Within this model, frontoparietal network recruitment is believed to contribute to both the spatial processing and working memory task demands. The current study used functional magnetic resonance imaging (fMRI) to test each step of this model in 15 participants who encoded OLAs and performed standard n-back tasks. As expected, object processing resulted in activation of the ventral visual stream. Object in location processing resulted in activation of both the ventral and dorsal visual streams as well as a lateral frontoparietal network. This condition was also the only one to result in medial temporal lobe activation, supporting its role in associative learning. A conjunction analysis revealed areas of shared activation between the working memory and object in location phase within the lateral frontoparietal network, anterior insula, and basal ganglia; consistent with prior working memory literature. Overall, findings support Postma and colleague's model and provide clear evidence for the role of working memory during OLA encoding. Published by Elsevier B.V.
机译:邮政母和同事们的最近模型与对象定位关联(OLAs)的编码需要协调由腹侧(对象感知)和背部(空间感知)视觉途径以及海马(特征结合)介导的若干认知过程(特征结合)[ 1]。在此模型中,据信常规网络招聘促进空间处理和工作记忆任务需求。目前的研究使用了功能磁共振成像(FMRI)来测试该模型中的每个步骤,在编码OLAS并执行标准的N背部任务。正如预期的那样,对象处理导致腹侧视觉流激活。位置处理中的对象导致腹侧和背部视觉流的激活以及横向前部网络。这种情况也是唯一一个导致中间颞叶激活的唯一一个,支持其在联想学习中的作用。结合分析显示了在横向前部网络,前肠和基底神经节内的工作记忆和物体之间的共同激活的区域;与先前的工作记忆文献一致。总体而言,调查结果支持邮政邮政和同事的模型,并为OLA编码期间提供了清晰的作用。 elsevier b.v出版。

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