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一个关于复杂性的问题?背侧后顶叶皮层在处理随时间变化的空间信息中的作用。

A matter of complexity? The role of the dorsal posterior parietal cortex in processing changes in spatial information across time.

作者信息

Wise Taylor B, Heimer-McGinn Victoria R, Dankert Anne M, Alessandro Carina R, Martin Dominique E, Burwell Rebecca D, Templer Victoria L

机构信息

Department of Cognitive and Psychological Science, Brown University.

Department of Psychology and Program in Neuroscience, Providence College.

出版信息

Behav Neurosci. 2025 Apr;139(2):91-104. doi: 10.1037/bne0000616. Epub 2025 Jan 9.

Abstract

The posterior parietal cortex (PPC) is an associative neocortical region that integrates multiple streams of information and is implicated in spatial cognition and decision making. In some cases, however, the PPC is not required for these functions. One possibility is that the PPC is recruited when spatial complexity is high. Yet, few studies of PPC function have explicitly manipulated environmental complexity, complexity of spatial changes, or the temporal structure of spatial tasks. To examine whether task complexity recruits PPC function, we tested rats with neurotoxic damage to the dorsal PPC on a series of tasks varying in spatial and temporal complexity. Recognition memory was first assessed in standard exploration tasks, including object recognition, object location, and object in place, as well as a more complex object task in which spatial changes occurred across multiple delays. Spatial navigation was assessed in the circular hole board maze (Barnes maze), and temporal processing was assessed in a temporal order task. PPC damage spared performance on standard recognition memory tasks but caused deficits on tasks involving changes in object configuration or multiple changes across time. PPC damage spared acquisition on the Barnes maze but impaired retention and decreased efficiency of search strategies. PPC damage did not impact temporal order memory. Overall, these results suggest that the PPC is necessary when spatial complexity of the task increases attentional and long-term memory demands. (PsycInfo Database Record (c) 2025 APA, all rights reserved).

摘要

顶叶后皮质(PPC)是一个联合新皮质区域,它整合多种信息流,并与空间认知和决策有关。然而,在某些情况下,这些功能并不需要PPC参与。一种可能性是,当空间复杂性较高时,PPC会被调用。然而,很少有关于PPC功能的研究明确操纵环境复杂性、空间变化的复杂性或空间任务的时间结构。为了研究任务复杂性是否会调用PPC功能,我们在一系列空间和时间复杂性不同的任务中,对背侧PPC有神经毒性损伤的大鼠进行了测试。首先在标准探索任务中评估识别记忆,包括物体识别、物体位置和原地物体识别,以及一个更复杂的物体任务,其中空间变化在多个延迟中发生。在圆孔板迷宫(巴恩斯迷宫)中评估空间导航,在时间顺序任务中评估时间处理。PPC损伤不影响标准识别记忆任务的表现,但会导致涉及物体配置变化或随时间的多次变化的任务出现缺陷。PPC损伤不影响巴恩斯迷宫中的习得,但会损害保持能力并降低搜索策略的效率。PPC损伤不影响时间顺序记忆。总体而言,这些结果表明,当任务的空间复杂性增加注意力和长期记忆需求时,PPC是必要的。(PsycInfo数据库记录(c)2025美国心理学会,保留所有权利)

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本文引用的文献

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