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合成与生物人工触觉传感:综述。

Synthetic and bio-artificial tactile sensing: a review.

机构信息

The BioRobotics Institute, Scuola Superiore Sant'Anna, Polo Sant'Anna Valdera, Pontedera 56025, PI, Italy.

出版信息

Sensors (Basel). 2013 Jan 24;13(2):1435-66. doi: 10.3390/s130201435.

Abstract

This paper reviews the state of the art of artificial tactile sensing, with a particular focus on bio-hybrid and fully-biological approaches. To this aim, the study of physiology of the human sense of touch and of the coding mechanisms of tactile information is a significant starting point, which is briefly explored in this review. Then, the progress towards the development of an artificial sense of touch are investigated. Artificial tactile sensing is analysed with respect to the possible approaches to fabricate the outer interface layer: synthetic skin versus bio-artificial skin. With particular respect to the synthetic skin approach, a brief overview is provided on various technologies and transduction principles that can be integrated beneath the skin layer. Then, the main focus moves to approaches characterized by the use of bio-artificial skin as an outer layer of the artificial sensory system. Within this design solution for the skin, bio-hybrid and fully-biological tactile sensing systems are thoroughly presented: while significant results have been reported for the development of tissue engineered skins, the development of mechanotransduction units and their integration is a recent trend that is still lagging behind, therefore requiring research efforts and investments. In the last part of the paper, application domains and perspectives of the reviewed tactile sensing technologies are discussed.

摘要

本文回顾了人工触觉传感的最新进展,特别关注生物混合和全生物方法。为此,本综述简要探讨了人类触觉生理学和触觉信息编码机制的研究,作为一个重要的起点。然后,研究了开发人工触觉的进展。从制造外接口层的可能方法的角度对人工触觉传感进行了分析:合成皮肤与生物人工皮肤。特别针对合成皮肤方法,本文简要概述了可集成在皮肤层下的各种技术和换能原理。然后,主要关注点转移到使用生物人工皮肤作为人工感觉系统的外层的方法。在这种皮肤设计解决方案中,本文全面介绍了生物混合和全生物触觉传感系统:尽管在组织工程皮肤的开发方面已经取得了显著的成果,但机械换能单元的开发及其集成是一个新的趋势,仍落后于其他领域,因此需要投入研究和资金。在本文的最后一部分,讨论了所综述的触觉传感技术的应用领域和前景。

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