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Investigating the interaction between spatial perception and working memory in the human medial temporal lobe.

机译:研究人类颞叶内侧空间感知与工作记忆之间的相互作用。

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摘要

There has been considerable debate surrounding the functions of the medial temporal lobe (MTL). Although this region has been traditionally thought to subserve long-term declarative memory only, recent evidence suggests a role in short-term working memory and even higher order perception. To investigate this issue, functional neuroimaging was used to investigate the involvement of the MTL in spatial scene perception and working memory. Healthy participants were scanned during a working memory task incorporating two factors of working memory (high vs. low demand) and spatial processing (complex vs. simple). It was found that an increase in spatial processing demand produced significantly greater activity in the posterior hippocampus and parahippocampal cortex irrespective of whether working memory demand was high or low. In contrast, there was no region within the MTL that increased significantly in activity during both the complex and the simple spatial processing conditions when working memory demand was increased. There was, however, a significant interaction effect between spatial processing and working memory in the right posterior hippocampus and parahippocampal cortex bilaterally: An increase in working memory demand produced a significant increase in activity in these areas during the complex, but not simple, spatial processing conditions. These findings suggest that although there may be a role for the MTL in both stimulus processing and working memory, increasing the latter does not necessarily increase posterior MTL involvement. We suggest that these structures may play a critical role in processing complex spatial representations, which, in turn, may form the basis of short- and long-term mnemonic processes.
机译:围绕颞中叶(MTL)的功能存在很多争论。尽管传统上认为该区域仅服从长期声明性记忆,但最近的证据表明该区域在短期工作记忆甚至更高阶的感知中起作用。为了研究这个问题,功能神经影像学被用来研究MTL在空间场景感知和工作记忆中的参与。健康参与者在工作记忆任务期间进行了扫描,该任务结合了工作记忆(高需求与低需求)和空间处理(复杂与简单)两个因素。研究发现,无论工作记忆需求是高还是低,空间加工需求的增加都会在海马后部和海马旁皮质产生更大的活动。相反,当工作记忆需求增加时,在复杂和简单的空间处理条件下,MTL中都没有活动显着增加的区域。然而,右侧后海马和海马旁皮质的空间加工与工作记忆之间存在显着的交互作用:在复杂而非简单的空间加工过程中,工作记忆需求的增加使这些区域的活动显着增加条件。这些发现表明,尽管MTL在刺激过程和工作记忆中都可能起作用,但是增加后者并不一定会增加后MTL的参与。我们建议这些结构可能在处理复杂的空间表示中起关键作用,而这些空间表示又可能构成短期和长期助记符过程的基础。

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  • 作者

    Lee, AC; Rudebeck, SR;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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