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Assessing the mechanism of response in the retrosplenial cortex of good and poor navigators

机译:评估好导航员和差导航员的脊髓后皮质的反应机制

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摘要

The retrosplenial cortex (RSC) is consistently engaged by a range of tasks that examine episodic memory, imagining the future, spatial navigation, and scene processing. Despite this, an account of its exact contribution to these cognitive functions remains elusive. Here, using functional MRI (fMRI) and multi-voxel pattern analysis (MVPA) we found that the RSC coded for the specific number of permanent outdoor items that were in view, that is, items which are fixed and never change their location. Moreover, this effect was selective, and was not apparent for other item features such as size and visual salience. This detailed detection of the number of permanent items in view was echoed in the parahippocampal cortex (PHC), although the two brain structures diverged when participants were divided into good and poor navigators. There was no difference in the responsivity of the PHC between the two groups, while significantly better decoding of the number of permanent items in view was possible from patterns of activity in the RSC of good compared to poor navigators. Within good navigators, the RSC also facilitated significantly better prediction of item permanence than the PHC. Overall, these findings suggest that the RSC in particular is concerned with coding the presence of every permanent item that is in view. This mechanism may represent a key building block for spatial and scene representations that are central to episodic memories and imagining the future, and could also be a prerequisite for successful navigation.
机译:脾后皮质(RSC)始终执行一系列任务,这些任务检查情节记忆,想象未来,空间导航和场景处理。尽管如此,仍然难以确定其对这些认知功能的确切贡献。在这里,使用功能性MRI(fMRI)和多体素模式分析(MVPA),我们发现RSC编码的是所看到的特定数量的永久性户外物品,即固定且永不改变位置的物品。此外,这种效果是选择性的,对于其他项目特征(例如大小和视觉显着性)而言并不明显。尽管将参与者分为好导航者和差导航者时,两个大脑结构发生了分歧,但在海马旁皮质(PHC)中回响了对所查看的永久项数量的详细检测。两组之间PHC的响应率没有差异,但从良好的RSC中的活动模式来看,与较差的导航者相比,有可能对永久项的数量进行更好的解码。在优秀的导航员中,RSC还比PHC大大促进了项目持久性的预测。总体而言,这些发现表明,RSC特别关注编码所考虑的每个永久性物品的存在。这种机制可能代表了空间和场景表示的关键构件,而空间和场景表示对于情景记忆和想象未来至关重要,并且也可能是成功导航的前提。

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