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触觉刺激会减少或促进听觉流的分离:心理物理学与建模

Tactile stimulations reduce or promote the segregation of auditory streams: psychophysics and modeling.

作者信息

Darki Farzaneh, Rankin James, Słowiński Piotr

机构信息

Department of Mathematics and Statistics, Faculty of Environment, Science and Economy, University of Exeter, Exeter, United Kingdom.

出版信息

PLoS Comput Biol. 2025 Aug 18;21(8):e1012701. doi: 10.1371/journal.pcbi.1012701. eCollection 2025 Aug.

Abstract

Auditory stream segregation plays a crucial role in understanding the auditory scene. This study investigates the role of tactile stimulation in auditory stream segregation through psychophysics experiments and a computational model of audio-tactile interactions. We examine how tactile pulses, synchronized with one group of tones (high- or low-frequency tones) in a sequence of interleaved high- and low-frequency tones (ABA- triplets), influence the likelihood of perceiving integrated or segregated auditory streams. Our findings reveal that tactile pulses synchronized with a single tone sequence (either the A-tone or B-tone sequence) enhance perceptual segregation, while pulses synchronized with both tone sequences promote integration. Based on these findings, we developed a dynamical model that captures interactions between auditory and tactile neural circuits, including recurrent excitation, mutual inhibition, adaptation, and noise. The proposed model shows excellent agreement with the experiment. Model predictions are validated through psychophysics experiments. In the model, we assume that selective tactile stimulation dynamically modulates the tonotopic organization within the auditory cortex. This modulation facilitates segregation by reinforcing specific tonotopic responses through single-tone synchronization while smoothing neural activity patterns with dual-tone alignment to promote integration. The model offers a robust computational framework for exploring cross-modal effects on stream segregation and predicts neural behavior under varying tactile conditions. Our findings imply that cross-modal synchronization, with carefully timed tactile cues, could improve auditory perception with potential applications in auditory assistive technologies aimed at enhancing speech recognition in noisy settings.

摘要

听觉流分离在理解听觉场景中起着至关重要的作用。本研究通过心理物理学实验和听觉 - 触觉相互作用的计算模型,探讨触觉刺激在听觉流分离中的作用。我们研究在交错的高频和低频音调序列(ABA三元组)中,与一组音调(高频或低频音调)同步的触觉脉冲如何影响感知整合或分离的听觉流的可能性。我们的研究结果表明,与单个音调序列(A音调或B音调序列)同步的触觉脉冲增强了感知分离,而与两个音调序列同步的脉冲则促进了整合。基于这些发现,我们开发了一个动力学模型,该模型捕捉了听觉和触觉神经回路之间的相互作用,包括递归兴奋、相互抑制、适应和噪声。所提出的模型与实验结果高度吻合。模型预测通过心理物理学实验得到验证。在模型中,我们假设选择性触觉刺激动态调节听觉皮层内的音调组织。这种调节通过单音调同步增强特定的音调反应来促进分离,同时通过双音调对齐平滑神经活动模式以促进整合。该模型为探索跨模态对流分离的影响提供了一个强大的计算框架,并预测了不同触觉条件下的神经行为。我们的研究结果表明,通过精心定时的触觉线索进行跨模态同步,可以改善听觉感知,在旨在增强嘈杂环境中语音识别的听觉辅助技术中具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e7d/12370199/fce02743cce2/pcbi.1012701.g001.jpg

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