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解析神经罗盘中的参考系

Disentangling reference frames in the neural compass.

作者信息

Dutriaux Léo, Xu Yangwen, Sartorato Nicola, Lhuillier Simon, Bottini Roberto

机构信息

Center for Mind/Brain Sciences (CIMeC), University of Trento, Trento, Italy.

Université Lumière Lyon 2, Laboratoire d'Études des Mécanismes Cognitifs, Lyon, France.

出版信息

Imaging Neurosci (Camb). 2024 May 1;2. doi: 10.1162/imag_a_00149. eCollection 2024.

Abstract

The neural system that encodes heading direction in humans can be found in themedial and superior parietal cortex and the entorhinal-retrosplenial circuit.However, it is still unclear whether heading direction in these differentregions is represented within an allocentric or egocentric coordinate system. Toinvestigate this problem, we first asked whether regions encoding (putatively)allocentric facing direction also encode (unambiguously) egocentric goaldirection. Second, we assessed whether directional coding in these regionsscaled with the preference for an allocentric perspective during everydaynavigation. Before the experiment, participants learned different object maps intwo geometrically similar rooms. In the MRI scanner, their task was to retrievethe egocentric position of a target object (e.g., Front, Left) relative to animagined facing direction (e.g., North, West). Multivariate analyses showed, aspredicted, that facing direction was encoded bilaterally in the superiorparietal lobule (SPL), the retrosplenial complex (RSC), and the left entorhinalcortex (EC), a result that could be interpreted both allocentrically andegocentrically. Crucially, we found that the same voxels in the SPL and RSC alsocoded for egocentric goal direction but not for allocentric goal direction.Moreover, when facing directions were expressed as egocentric bearings relativeto a reference vector, activities for facing direction and egocentric goaldirection were correlated, suggesting a common reference frame. Besides, onlythe left EC coded allocentric goal direction as a function of thesubject's propensity to use allocentric strategies. Altogether, theseresults suggest that heading direction in the superior and medial parietalcortex is mediated by an egocentric code, whereas the entorhinal cortex encodesdirections according to an allocentric reference frame.

摘要

人类中编码头部方向的神经系统可在内侧和顶上叶皮质以及内嗅- retrosplenial回路中找到。然而,这些不同区域中的头部方向是在以自我为中心还是以自我为中心的坐标系中表示,目前仍不清楚。为了研究这个问题,我们首先询问编码(假定)以自我为中心的朝向方向的区域是否也编码(明确地)以自我为中心的目标方向。其次,我们评估了这些区域中的方向编码是否随着日常导航中对以自我为中心视角的偏好而缩放。在实验之前,参与者在两个几何形状相似的房间里学习了不同的物体地图。在MRI扫描仪中,他们的任务是检索目标物体相对于想象的朝向方向(例如,北、西)的以自我为中心的位置(例如前、左)。多变量分析表明,正如预期的那样,朝向方向在双侧顶上小叶(SPL)、 retrosplenial复合体(RSC)和左侧内嗅皮质(EC)中编码,这一结果可以从以自我为中心和以自我为中心的角度进行解释。至关重要的是,我们发现SPL和RSC中的相同体素也编码以自我为中心的目标方向,但不编码以自我为中心的目标方向。此外,当朝向方向表示为相对于参考向量的以自我为中心的方位时,朝向方向和以自我为中心的目标方向的活动是相关的,这表明存在一个共同的参考框架。此外,只有左侧EC根据受试者使用以自我为中心策略的倾向对以自我为中心的目标方向进行编码。总之,这些结果表明,顶上叶和内侧顶叶皮质中的头部方向是由以自我为中心的代码介导的,而内嗅皮质则根据以自我为中心的参考框架对方向进行编码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f116/12247608/119ccc513948/imag_a_00149_fig1.jpg

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