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The temporal effects of auditory and visual immersion on speech level in virtual environments

2026/01/01 by Xinyi N. Zhang, Arian Shamei, Florian Grond +2 · 1 voice
Psychology · Neuroscience · #Multisensory perception and integration #Hearing Loss and Rehabilitation #Tactile and Sensory Interactions

paper · doi:10.1121/10.0042240

openalex publication_date 2026/01/01 · openalex created_date 2026/01/14 · openalex updated_date 2026/07/22

Abstract

Speech takes place in physical environments with visual and acoustic properties, yet how these elements and their interaction influence speech production is not fully understood. While a room's appearance can suggest its acoustics, it is unclear whether people adjust their speech based on this visual information. Previous research shows that higher reverberation leads to reduced speech level, but how auditory and visual information interact in this process remains limited. This study examined how audiovisual information affects speech level by immersing participants in virtual environments with varying reverberation and room visuals (hemi-anechoic room, classroom, and gymnasium) while completing speech tasks. Speech level was analyzed using generalized additive mixed-effects modeling to assess temporal changes during utterances across conditions. Results showed that visual information significantly influenced speech level, though not strictly in line with expected acoustics or perceived room size; auditory information had a stronger overall effect than visual information. Visual information had an earlier influence that diminished over time, whereas the auditory effect increased and plateaued. These findings contribute to the understanding of multisensory integration in speech control and have implications in enhancing vocal performance and supporting more naturalistic communication in virtual environments.

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