Department of Psychology, Sapienza University, Rome, Italy.
Department of Humanities, Education and Social Sciences, University of Molise, Campobasso, Italy.
Brain Struct Funct. 2024 Jun;229(5):1021-1045. doi: 10.1007/s00429-024-02790-8. Epub 2024 Apr 9.
Optic flow provides useful information in service of spatial navigation. However, whether brain networks supporting these two functions overlap is still unclear. Here we used Activation Likelihood Estimation (ALE) to assess the correspondence between brain correlates of optic flow processing and spatial navigation and their specific neural activations. Since computational and connectivity evidence suggests that visual input from optic flow provides information mainly during egocentric navigation, we further tested the correspondence between brain correlates of optic flow processing and that of both egocentric and allocentric navigation. Optic flow processing shared activation with egocentric (but not allocentric) navigation in the anterior precuneus, suggesting its role in providing information about self-motion, as derived from the analysis of optic flow, in service of egocentric navigation. We further documented that optic flow perception and navigation are partially segregated into two functional and anatomical networks, i.e., the dorsal and the ventromedial networks. Present results point to a dynamic interplay between the dorsal and ventral visual pathways aimed at coordinating visually guided navigation in the environment.
光流为空间导航提供了有用的信息。然而,支持这两种功能的大脑网络是否重叠仍不清楚。在这里,我们使用激活似然估计(ALE)来评估光流处理和空间导航的大脑相关物之间的对应关系及其特定的神经激活。由于计算和连通性证据表明,来自光流的视觉输入主要在自我中心导航期间提供信息,因此我们进一步测试了光流处理的大脑相关物与自我中心和他心导航之间的对应关系。光流处理在前扣带皮层的前区与自我中心(而不是他心)导航共享激活,这表明它在自我中心导航中扮演了提供源自光流分析的自我运动信息的角色。我们进一步证明,光流感知和导航部分分离为两个功能和解剖网络,即背侧和腹侧网络。目前的结果表明,背侧和腹侧视觉通路之间存在动态相互作用,旨在协调环境中的视觉导向导航。