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一种用于构建人工触觉的神经认知通路。

A neurocognitive pathway for engineering artificial touch.

作者信息

Nisky Ilana, Makin Tamar R

机构信息

Department of Biomedical Engineering, Ben-Gurion University of the Negev, Beer Sheva, Israel.

The School of Brain Sciences and Cognition, Ben-Gurion University of the Negev, Israel.

出版信息

Sci Adv. 2024 Dec 20;10(51):eadq6290. doi: 10.1126/sciadv.adq6290. Epub 2024 Dec 18.

Abstract

Artificial haptics has the potential to revolutionize the way we integrate physical and virtual technologies in our daily lives, with implications for teleoperation, motor skill acquisition, rehabilitation, gaming, interpersonal communication, and beyond. Here, we delve into the intricate interplay between the somatosensory system and engineered haptic inputs for perception and action. We critically examine the sensory feedback's fidelity and the cognitive demands of interfacing with these systems. We examine how artificial touch interfaces could be redesigned to better align with human sensory, motor, and cognitive systems, emphasizing the dynamic and context-dependent nature of sensory integration. We consider the various learning processes involved in adapting to artificial haptics, highlighting the need for interfaces that support both explicit and implicit learning mechanisms. We emphasize the need for technologies that are not only physiologically biomimetic but also behaviorally and cognitively congruent with the user, affording a range of alternative solutions to users' needs.

摘要

人工触觉有潜力彻底改变我们在日常生活中整合物理和虚拟技术的方式,对远程操作、运动技能习得、康复、游戏、人际交流等领域都有影响。在此,我们深入探讨体感系统与工程触觉输入之间在感知和行动方面的复杂相互作用。我们批判性地审视感官反馈的保真度以及与这些系统交互的认知需求。我们研究如何重新设计人工触觉界面,使其更好地与人类的感官、运动和认知系统相匹配,强调感官整合的动态性和情境依赖性。我们考虑适应人工触觉所涉及的各种学习过程,突出支持显性和隐性学习机制的界面的必要性。我们强调不仅需要在生理上仿生,而且在行为和认知上与用户一致的技术,为用户需求提供一系列替代解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1181/11654688/5906ab79fd6b/sciadv.adq6290-f1.jpg

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