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额下回对 FEF 和顶内沟的自上而下调制在视觉特征短期记忆中。

Top-down modulation from inferior frontal junction to FEFs and intraparietal sulcus during short-term memory for visual features.

机构信息

University of Oslo.

出版信息

J Cogn Neurosci. 2013 Nov;25(11):1944-56. doi: 10.1162/jocn_a_00426. Epub 2013 May 22.

Abstract

Visual STM of simple features is achieved through interactions between retinotopic visual cortex and a set of frontal and parietal regions. In the present fMRI study, we investigated effective connectivity between central nodes in this network during the different task epochs of a modified delayed orientation discrimination task. Our univariate analyses demonstrate that the inferior frontal junction (IFJ) is preferentially involved in memory encoding, whereas activity in the putative FEFs and anterior intraparietal sulcus (aIPS) remains elevated throughout periods of memory maintenance. We have earlier reported, using the same task, that areas in visual cortex sustain information about task-relevant stimulus properties during delay intervals [Sneve, M. H., Alnæs, D., Endestad, T., Greenlee, M. W., & Magnussen, S. Visual short-term memory: Activity supporting encoding and maintenance in retinotopic visual cortex. Neuroimage, 63, 166-178, 2012]. To elucidate the temporal dynamics of the IFJ-FEF-aIPS-visual cortex network during memory operations, we estimated Granger causality effects between these regions with fMRI data representing memory encoding/maintenance as well as during memory retrieval. We also investigated a set of control conditions involving active processing of stimuli not associated with a memory task and passive viewing. In line with the developing understanding of IFJ as a region critical for control processes with a possible initiating role in visual STM operations, we observed influence from IFJ to FEF and aIPS during memory encoding. Furthermore, FEF predicted activity in a set of higher-order visual areas during memory retrieval, a finding consistent with its suggested role in top-down biasing of sensory cortex.

摘要

通过视皮层与额顶区域之间的相互作用,实现了对简单特征的视觉 STM。在本 fMRI 研究中,我们在一个改良的延迟方向辨别任务的不同任务时段,研究了该网络中中枢节点之间的有效连接。我们的单变量分析表明,下额顶连接区(IFJ)优先参与记忆编码,而在记忆维持期间,假定的额前运动区(FEF)和前顶内沟(aIPS)的活动仍然保持升高。我们之前使用相同的任务报告称,在延迟间隔期间,视觉皮层中的区域维持着与任务相关刺激属性的信息[Sneve,M.H.,Alnæs,D.,Endestad,T.,Greenlee,M.W.,&Magnussen,S.视觉短期记忆:在纹状视觉皮层中支持编码和维持的活动。神经影像,63,166-178,2012]。为了阐明 IFJ-FEF-aIPS-视觉皮层网络在记忆操作期间的时间动态,我们使用 fMRI 数据估计了这些区域之间的格兰杰因果效应,这些数据代表了记忆编码/维持以及记忆检索期间的活动。我们还研究了一组涉及主动处理与记忆任务无关的刺激和被动观察的控制条件。与 IFJ 作为控制过程关键区域的发展理解一致,我们观察到 IFJ 在记忆编码期间对 FEF 和 aIPS 的影响。此外,FEF 在记忆检索期间预测了一组高级视觉区域的活动,这一发现与它在自上而下的感官皮层偏向中的作用一致。

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