Surface Vibrotactile Texture Feedback: A Scoping Review of Perceptual Evidence, Rendering Strategies, and Evaluation Practices

Surface vibrotactile texture feedback is an important HCI modality for conveying material-related information and supporting multisensory interaction. However, evidence across perception, rendering, actuation, parameter mapping, and evaluation remains fragmented. This scoping review synthesized 79 studies published between 1997 and 2025 using PRISMA-ScR-informed procedures. Research focused mainly on roughness perception and texture discrimination, with less attention to material correspondence, affective experience, and contextual performance. Rendering approaches included parametric synthesis, model-based generation, recorded-signal reproduction, and data-driven mapping. Their effectiveness depended on perceptual cues, exploratory behavior, and actuator–surface–finger dynamics, limiting evidence for transferable one-to-one parameter–perception mappings. Evaluations were heterogeneous and typically used small samples to assess short-term perceptual outcomes. We therefore developed an evidence-informed five-stage experience-to-rendering framework: outcome definition, perceptual cue selection, actuator configuration matching, parameter mapping and calibration, and iterative evaluation, providing a structured basis for designing and evaluating surface vibrotactile textures.

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Publication Details

Journal
International Journal of Human-Computer Interaction
Published
2026-09-28
DOI
https://doi.org/10.1080/10447318.2026.2735494
Primary Topic
Tactile and Sensory Interactions
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article
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Surface Vibrotactile Texture Feedback: A Scoping Review of Perceptual Evidence, Rendering Strategies, and Evaluation Practices

Suwen Luo, Yuqing Jiang, Minglu Zhu, Xin Zhang
International Journal of Human-Computer Interaction
Tactile and Sensory Interactions
article

Surface Vibrotactile Texture Feedback: A Scoping Review of Perceptual Evidence, Rendering Strategies, and Evaluation Practices

Suwen Luo, Yuqing Jiang, Minglu Zhu, Xin Zhang
article en

Abstract

Surface vibrotactile texture feedback is an important HCI modality for conveying material-related information and supporting multisensory interaction. However, evidence across perception, rendering, actuation, parameter mapping, and evaluation remains fragmented. This scoping review synthesized 79 studies published between 1997 and 2025 using PRISMA-ScR-informed procedures. Research focused mainly on roughness perception and texture discrimination, with less attention to material correspondence, affective experience, and contextual performance. Rendering approaches included parametric synthesis, model-based generation, recorded-signal reproduction, and data-driven mapping. Their effectiveness depended on perceptual cues, exploratory behavior, and actuator–surface–finger dynamics, limiting evidence for transferable one-to-one parameter–perception mappings. Evaluations were heterogeneous and typically used small samples to assess short-term perceptual outcomes. We therefore developed an evidence-informed five-stage experience-to-rendering framework: outcome definition, perceptual cue selection, actuator configuration matching, parameter mapping and calibration, and iterative evaluation, providing a structured basis for designing and evaluating surface vibrotactile textures.

International Journal of Human-Computer Interaction
Soochow University (TW), Soochow University (CN)
Reduced inequalities
Openalex Percentile: Top 10%
Tactile and Sensory Interactions
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Surface Vibrotactile Texture Feedback: A Scoping Review of Perceptual Evidence, Rendering Strategies, and Evaluation Practices — Suwen Luo, Yuqing Jiang, et al. · International Journal of Human-Computer Interaction (2026) | TGRS Research Map | TGRS