Bruns Patrick, Röder Brigitte
Biological Psychology and Neuropsychology, University of Hamburg, Hamburg, Germany.
Biological Psychology and Neuropsychology, University of Hamburg, Hamburg, Germany.
Trends Cogn Sci. 2023 Oct;27(10):961-973. doi: 10.1016/j.tics.2023.04.012. Epub 2023 May 17.
Multisensory spatial processes are fundamental for efficient interaction with the world. They include not only the integration of spatial cues across sensory modalities, but also the adjustment or recalibration of spatial representations to changing cue reliabilities, crossmodal correspondences, and causal structures. Yet how multisensory spatial functions emerge during ontogeny is poorly understood. New results suggest that temporal synchrony and enhanced multisensory associative learning capabilities first guide causal inference and initiate early coarse multisensory integration capabilities. These multisensory percepts are crucial for the alignment of spatial maps across sensory systems, and are used to derive more stable biases for adult crossmodal recalibration. The refinement of multisensory spatial integration with increasing age is further promoted by the inclusion of higher-order knowledge.
多感官空间过程对于与世界进行有效互动至关重要。它们不仅包括跨感官模态的空间线索整合,还包括根据不断变化的线索可靠性、跨模态对应关系和因果结构对空间表征进行调整或重新校准。然而,人们对多感官空间功能在个体发育过程中是如何出现的知之甚少。新的研究结果表明,时间同步性和增强的多感官联想学习能力首先引导因果推理,并启动早期粗略的多感官整合能力。这些多感官感知对于跨感官系统的空间地图对齐至关重要,并被用于为成人跨模态重新校准得出更稳定的偏差。随着年龄增长,高阶知识的纳入进一步促进了多感官空间整合的精细化。