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运动的速度和相位决定了扫视概率和同步低频功率谱。

The speed and phase of locomotion dictate saccade probability and simultaneous low-frequency power spectra.

作者信息

Barnes Lydia, Davidson Matthew J, Alais David

机构信息

School of Psychology, The University of Sydney, Sydney, NSW, Australia.

出版信息

Atten Percept Psychophys. 2025 Jan;87(1):245-260. doi: 10.3758/s13414-024-02932-4. Epub 2024 Jul 24.

Abstract

Every day we make thousands of saccades and take thousands of steps as we explore our environment. Despite their common co-occurrence in a typical active state, we know little about the coordination between eye movements, walking behaviour and related changes in cortical activity. Technical limitations have been a major impediment, which we overcome here by leveraging the advantages of an immersive wireless virtual reality (VR) environment with three-dimensional (3D) position tracking, together with simultaneous recording of eye movements and mobile electroencephalography (EEG). Using this approach with participants engaged in unencumbered walking along a clear, level path, we find that the likelihood of eye movements at both slow and natural walking speeds entrains to the rhythm of footfall, peaking after the heel-strike of each step. Compared to previous research, this entrainment was captured in a task that did not require visually guided stepping - suggesting a persistent interaction between locomotor and visuomotor functions. Simultaneous EEG recordings reveal a concomitant modulation entrained to heel-strike, with increases and decreases in oscillatory power for a broad range of frequencies. The peak of these effects occurred in the theta and alpha range for slow and natural walking speeds, respectively. Together, our data show that the phase of the step-cycle influences other behaviours such as eye movements, and produces related modulations of simultaneous EEG following the same rhythmic pattern. These results reveal gait as an important factor to be considered when interpreting saccadic and time-frequency EEG data in active observers, and demonstrate that saccadic entrainment to gait may persist throughout everyday activities.

摘要

在探索周围环境时,我们每天都会进行数千次扫视并迈出数千步。尽管在典型的活跃状态下它们经常同时出现,但我们对眼动、行走行为以及皮层活动的相关变化之间的协调了解甚少。技术限制一直是一个主要障碍,我们在此通过利用沉浸式无线虚拟现实(VR)环境的优势克服了这一障碍,该环境具有三维(3D)位置跟踪功能,同时记录眼动和移动脑电图(EEG)。通过让参与者在清晰、平坦的路径上自由行走的方式使用这种方法,我们发现,在慢走和自然行走速度下,眼动的可能性都与脚步节奏同步,在每一步的脚跟触地后达到峰值。与之前的研究相比,这种同步现象是在一项不需要视觉引导行走的任务中捕捉到的,这表明运动功能和视觉运动功能之间存在持续的相互作用。同步脑电图记录显示,同时存在与脚跟触地同步的调制,在很宽的频率范围内振荡功率会增加和减少。这些效应的峰值分别出现在慢走和自然行走速度下的θ波和α波范围内。总之,我们的数据表明,步周期的相位会影响其他行为,如眼动,并以相同的节奏模式对同步脑电图产生相关调制。这些结果表明,在解释活跃观察者的扫视和时频脑电图数据时,步态是一个需要考虑的重要因素,并证明扫视对步态的同步可能在日常活动中持续存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e99c/11845409/e85332380307/13414_2024_2932_Fig1_HTML.jpg

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