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触觉对运动刺激的形状辨别。

Tactile shape discrimination for moving stimuli.

机构信息

ONERA, Information Processing and Systems Department, Cognitive Engineering and Applied Neurosciences Research Unit, Salon-de-Provence, 13661, France.

Jellysmack, Paris, 75008, France.

出版信息

Sci Rep. 2024 Apr 15;14(1):8707. doi: 10.1038/s41598-024-58509-6.

Abstract

In this study, we explored spatial-temporal dependencies and their impact on the tactile perception of moving objects. Building on previous research linking visual perception and human movement, we examined if an imputed motion mechanism operates within the tactile modality. We focused on how biological coherence between space and time, characteristic of human movement, influences tactile perception. An experiment was designed wherein participants were stimulated on their right palm with tactile patterns, either ambiguous (incongruent conditions) or non-ambiguous (congruent conditions) relative to a biological motion law (two-thirds power law) and asked to report perceived shape and associated confidence. Our findings reveal that introducing ambiguous tactile patterns (1) significantly diminishes tactile discrimination performance, implying motor features of shape recognition in vision are also observed in the tactile modality, and (2) undermines participants' response confidence, uncovering the accessibility degree of information determining the tactile percept's conscious representation. Analysis based on the Hierarchical Drift Diffusion Model unveiled the sensitivity of the evidence accumulation process to the stimulus's informational ambiguity and provides insight into tactile perception as predictive dynamics for reducing uncertainty. These discoveries deepen our understanding of tactile perception mechanisms and underscore the criticality of predictions in sensory information processing.

摘要

在这项研究中,我们探索了时空相关性及其对移动物体触觉感知的影响。基于将视觉感知与人类运动联系起来的先前研究,我们研究了在触觉模态中是否存在一个推断的运动机制。我们专注于具有生物连贯性的空间和时间如何影响触觉感知,这种生物连贯性是人类运动的特征。我们设计了一个实验,其中参与者的右手手掌受到触觉模式的刺激,这些模式相对于生物运动规律(三分之二次幂定律)是模糊的(不一致条件)或清晰的(一致条件),并要求他们报告感知到的形状和相关的置信度。我们的研究结果表明,引入模糊的触觉模式(1)显著降低了触觉辨别性能,这意味着在视觉中识别形状的运动特征也在触觉模态中观察到,(2)降低了参与者的反应置信度,揭示了决定触觉感知的有意识表现的信息可及程度。基于层次漂移扩散模型的分析揭示了证据积累过程对刺激信息模糊性的敏感性,并为触觉感知作为降低不确定性的预测动力学提供了深入了解。这些发现加深了我们对触觉感知机制的理解,并强调了预测在感官信息处理中的关键性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41eb/11018860/1a4a0ef08be8/41598_2024_58509_Fig1_HTML.jpg

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