Abstract The present study investigated the behavioural performance and the contributions of different brain regions on a spatial task performed by Wistar rats in the Cincinnati water maze (CWM) in two conditions: one where both distal and proximal visual cues were available (CWM-light group, n...
Spatial navigation is an essential high-level cognitive function in daily life. However, the involved brain regions such as hippocampus and entorhinal cortex are vulnerable to aging and result in structural atrophy and functional alterations.
0:42Data Preprocessing, Network Construction and Analyses 4:02Results: Analyses of Navigation Networks 5:34ConclusionSummary Automatic Translation Please note that all translations are automatically generated. Click here for the English version. Bu makale, insan beyninde uzamsal navigasyon için i...
Use of functional neuroimaging of brain activity during navigation; Activation of... Maguire,Eleanor,A.,... - 《Science》 被引量: 1891发表: 1998年 Human navigation network: the intrinsic functional organization and behavioral relevance Knowing where and getting there: a human navigation network. ...
This paper presents a cognitive neuroscience perspective on how the brain might represent position of the body in space, and how the brain might represent motion through space (navigation), with particular reference to the mammalian hippocampus. Data which show the hippocampus can represent both the...
There are known individual differences in both the ability to learn the layout of novel environments and the flexibility of strategies for navigating known environments. However, it is unclear how navigational abilities are impacted by high-stress scenar
One of the core regions in brain networks for spatial navigation is the hippocampus. The hippocampus binds and integrates location-specific information from multiple sensory modalities and uses it to transform spatial relationships into a global cognitive map11,12. During the formation process of this...
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Research on human navigation has indicated that males and females differ in self-reported navigation strategy as well as objective measures of navigation e
We found distinct brain networks supporting different perspectives/ strategies. Men showed stronger activation of frontal areas, whereas women showed stronger activation of posterior brain regions. The left inferior frontal gyrus was more strongly recruited during landmark-based navigation in men. The ...