Serveur d'exploration sur les dispositifs haptiques

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Fluid–Structure Interaction-Based Biomechanical Perception Model for Tactile Sensing

Identifieur interne : 001B96 ( Main/Merge ); précédent : 001B95; suivant : 001B97

Fluid–Structure Interaction-Based Biomechanical Perception Model for Tactile Sensing

Auteurs : Zheng Wang

Source :

RBID : PMC:3834156

English descriptors

Abstract

The reproduced tactile sensation of haptic interfaces usually selectively reproduces a certain object attribute, such as the object's material reflected by vibration and its surface shape by a pneumatic nozzle array. Tactile biomechanics investigates the relation between responses to an external load stimulus and tactile perception and guides the design of haptic interface devices via a tactile mechanism. Focusing on the pneumatic haptic interface, we established a fluid–structure interaction-based biomechanical model of responses to static and dynamic loads and conducted numerical simulation and experiments. This model provides a theoretical basis for designing haptic interfaces and reproducing tactile textures.


Url:
DOI: 10.1371/journal.pone.0079472
PubMed: 24260228
PubMed Central: 3834156

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PMC:3834156

Le document en format XML

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<p>The reproduced tactile sensation of haptic interfaces usually selectively reproduces a certain object attribute, such as the object's material reflected by vibration and its surface shape by a pneumatic nozzle array. Tactile biomechanics investigates the relation between responses to an external load stimulus and tactile perception and guides the design of haptic interface devices via a tactile mechanism. Focusing on the pneumatic haptic interface, we established a fluid–structure interaction-based biomechanical model of responses to static and dynamic loads and conducted numerical simulation and experiments. This model provides a theoretical basis for designing haptic interfaces and reproducing tactile textures.</p>
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