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Remembering the Past and Imagining the Future: A Neural Model of Spatial Memory and Imagery

机译:记住过去,想象未来:空间记忆和图像的神经模型

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The authors model the neural mechanisms underlying spatial cognition, integrating neuronal systems and behavioral data, and address the relationships between long-term memory, short-term memory, and imagery, and between egocentric and allocentric and visual and ideothetic representations. Long-term spatial memory is modeled as attractor dynamics within medial-temporal allocentric representations, and short-term memory is modeled as egocentric parietal representations driven by perception, retrieval, and imagery and modulated by directed attention. Both encoding and retrieval/imagery require translation between egocentric and allocentric representations, which are mediated by posterior parietal and retrosplenial areas and the use of head direction representations in Papez's circuit. Thus, the hippocampus effectively indexes information by real or imagined location, whereas Papez's circuit translates to imagery or from perception according to the direction of view. Modulation of this translation by motor efference allows spatial updating of representations, whereas prefrontal simulated motor efference allows mental exploration. The alternating temporal-parietal flows of information are organized by the theta rhythm. Simulations demonstrate the retrieval and updating of familiar spatial scenes, hemispatial neglect in memory, and the effects on hippocampal place cell firing of lesioned head direction representations and of conflicting visual and ideothetic inputs.
机译:作者对空间认知的神经机制建模,整合了神经元系统和行为数据,并解决了长期记忆,短期记忆和图像之间,以及以自我为中心,同心为中心以及视觉和意识形态表示之间的关系。长期空间记忆被建模为内侧-颞部异形中心表征内的吸引子动力学,而短期记忆被建模为以感知,检索和图像为驱动并以定向注意力进行调制的以自我为中心的顶板表征。编码和检索/图像都需要在以自我为中心和以同心为中心的表示之间进行转换,这是由后顶叶和脾后区域以及在Papez回路中使用头部方向表示来介导的。因此,海马通过真实或想象的位置有效地索引了信息,而帕皮兹的电路则根据视线的方向转换为图像或感知。通过运动影响对这种平移的调制允许对表示的空间更新,而前额模拟运动影响允许进行精神探索。信息的时空交替流动是由theta节奏组织的。模拟显示了对熟悉的空间场景的检索和更新,记忆中半pat侧的疏忽以及病变的头部方向表示以及视觉和意识形态输入冲突对海马位置细胞放电的影响。

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