Ultrasound-Based Human Machine Interfaces for Hand Gesture Recognition: A Scoping Review and Future Direction

IF 3.4 Q2 ENGINEERING, BIOMEDICAL
Keshi He
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引用次数: 0

Abstract

Since ultrasound signal is firstly used to build a human machine interface (HMI) for prosthetic control in 2006, ultrasound-based HMIs have received the great attention in the past 18 years. In this paper, I provide a comprehensive overview of every aspect of an ultrasound-based HMI for hand gesture recognition (HGR). Firstly, I introduce the principle of ultrasound-based HGR and then outline a workflow for an ultrasound-based HMI for HGR and detail each step involved in the workflow, followed by an introduction of performance evaluation and robustness of this type of HMI. Then, I review the research progress of ultrasound-based HMIs for HGR. After that, I introduce the state-of-the-art wearable ultrasound systems for HMIs. Furthermore, I summarize the miscellaneous application of ultrasound-based HMIs for HGR. Finally, I discuss the main research challenges and further envision future research directions for ultrasound-based HMIs for HGR.
基于超声波的人机界面手势识别:范围回顾和未来方向
自2006年首次利用超声信号构建假肢控制人机界面(HMI)以来,基于超声的人机界面在过去的18年中受到了极大的关注。在本文中,我提供了一个基于超声波的手势识别(HGR)的人机界面的各个方面的全面概述。首先介绍了基于超声的HGR原理,然后概述了基于超声的HGR HMI的工作流程,并详细介绍了工作流程中涉及的每个步骤,然后介绍了这种HMI的性能评估和鲁棒性。然后,综述了基于超声的hmi治疗HGR的研究进展。之后,我将介绍用于人机界面的最先进的可穿戴超声系统。此外,我总结了基于超声的hmi在HGR中的各种应用。最后,讨论了超声hmi用于HGR的主要研究挑战,并展望了未来的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.80
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