Suppr超能文献

触觉流对视觉航向感知的影响。

Influence of Tactile Flow on Visual Heading Perception.

作者信息

Rosenblum Lisa, Grewe Elisa, Churan Jan, Bremmer Frank

机构信息

Department of Neurophysics, Philipps-Universität Marburg, Karl-von-Frisch-Straße 8a, 35043 Marburg, Germany.

Center for Mind, Brain and Behavior, Philipps-Universität Marburg and Justus-Liebig-Universität Giessen, 35032 Marburg, Germany.

出版信息

Multisens Res. 2022 Mar 9;35(4):291-308. doi: 10.1163/22134808-bja10071.

Abstract

The integration of information from different sensory modalities is crucial for successful navigation through an environment. Among others, self-motion induces distinct optic flow patterns on the retina, vestibular signals and tactile flow, which contribute to determine traveled distance (path integration) or movement direction (heading). While the processing of combined visual-vestibular information is subject to a growing body of literature, the processing of visuo-tactile signals in the context of self-motion has received comparatively little attention. Here, we investigated whether visual heading perception is influenced by behaviorally irrelevant tactile flow. In the visual modality, we simulated an observer's self-motion across a horizontal ground plane (optic flow). Tactile self-motion stimuli were delivered by air flow from head-mounted nozzles (tactile flow). In blocks of trials, we presented only visual or tactile stimuli and subjects had to report their perceived heading. In another block of trials, tactile and visual stimuli were presented simultaneously, with the tactile flow within ±40° of the visual heading (bimodal condition). Here, importantly, participants had to report their perceived visual heading. Perceived self-motion direction in all conditions revealed a centripetal bias, i.e., heading directions were perceived as compressed toward straight ahead. In the bimodal condition, we found a small but systematic influence of task-irrelevant tactile flow on visually perceived headings as function of their directional offset. We conclude that tactile flow is more tightly linked to self-motion perception than previously thought.

摘要

整合来自不同感觉模态的信息对于在环境中成功导航至关重要。其中,自我运动在视网膜上会诱发独特的视觉流模式、前庭信号和触觉流,这些有助于确定行进距离(路径整合)或运动方向(航向)。虽然关于视觉 - 前庭信息组合处理的文献越来越多,但在自我运动背景下视觉 - 触觉信号的处理受到的关注相对较少。在此,我们研究了行为上不相关的触觉流是否会影响视觉航向感知。在视觉模态中,我们模拟观察者在水平地面平面上的自我运动(视觉流)。触觉自我运动刺激由头戴式喷嘴的气流传递(触觉流)。在试验块中,我们仅呈现视觉或触觉刺激,受试者必须报告他们感知到的航向。在另一试验块中,同时呈现触觉和视觉刺激,触觉流在视觉航向的±40°范围内(双峰条件)。在此,重要的是,参与者必须报告他们感知到的视觉航向。在所有条件下感知到的自我运动方向都显示出向心偏差,即航向方向被感知为朝着正前方压缩。在双峰条件下,我们发现与任务无关的触觉流对视觉感知航向有微小但系统的影响,这种影响是其方向偏移的函数。我们得出结论,触觉流与自我运动感知的联系比以前认为的更为紧密。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验