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Representation of human spatial navigation responding to input spatial information and output navigational strategies: An ALE meta-analysis

机译:人类空间导航响应输入空间信息和输出导航策略的表示:ALE META分析

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Spatial navigation is a crucial ability involving the interplay of multiple cognitive processes and is related to input spatial information (such as landmarks and orientation cues) and output navigational strategies (such as route-based and map-based). It is still not clear where is the spatial navigation system and whether these tasks evoke different activation patterns in human brain. Thus, we analyzed the reported brain activations of 33 related functional neuroimaging studies by using activation likelihood estimation (ALE) meta-analyses. Statistical analysis revealed a navigational system including the hippocampus, parahippocampal place area (PPA), retrosplenial complex (RSC), occipital place area (OPA), and insula. More likely, landmarks activate the left secondary motor cortex (SMC), whereas orientation cues activate the right somatosensory associative cortex (SAC). Although no region showed stronger activation likelihood in route- than map-based navigation, the map-based navigation had stronger activation likelihood in the right SAC than route-based navigation. These findings revealed the brain representation of spatial navigational system and suggested that different parts of this system are involved with the specific navigational tasks.
机译:空间导航是涉及多个认知过程的相互作用的重要能力,并且与输入空间信息(例如地标和方向提示)和输出导航策略(例如基于路由和基于地图)有关。它仍然不清楚空间导航系统在哪里以及这些任务是唤起人脑中不同的激活模式。因此,我们通过使用激活似然估计(ALE)Meta分析,分析了报告的33个相关功能神经影像学研究的脑激活。统计分析揭示了一种导航系统,包括海马,PARAHIPPopal Place面积(PPA),逆血分比综合体(RSC),枕骨位置区域(OPA)和insula。更有可能的是,地标激活左二级电机皮质(SMC),而定向线索激活右侧索声相关联的皮质(SAC)。虽然没有区域在途径的基于地图导航中显示出更强的激活可能性,但是基于地图的导航在右侧的SAC中具有更强的激活可能性,而不是基于路线的导航。这些发现揭示了空间导航系统的大脑代表性,并建议该系统的不同部分涉及特定的导航任务。

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