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Advanced technologies for intuitive control and sensation of prosthetics

机译:用于预防控制和假肢感觉的先进技术

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摘要

The Department of Defense, Department of Veterans Affairs and National Institutes of Health have invested significantly in advancing prosthetic technologies over the past 25?years, with the overall intent to improve the function, participation and quality of life of Service Members, Veterans, and all United States Citizens living with limb loss. These investments have contributed to substantial advancements in the control and sensory perception of prosthetic devices over the past decade. While control of motorized prosthetic devices through the use of electromyography has been widely available since the 1980s, this technology is not intuitive. Additionally, these systems do not provide stimulation for sensory perception. Recent research has made significant advancement not only in the intuitive use of electromyography for control but also in the ability to provide relevant meaningful perceptions through various stimulation approaches. While much of this previous work has traditionally focused on those with upper extremity amputation, new developments include advanced bidirectional neuroprostheses that are applicable to both the upper and lower limb amputation. The goal of this review is to examine the state-of-the-science in the areas of intuitive control and sensation of prosthetic devices and to discuss areas of exploration for the future. Current research and development efforts in external systems, implanted systems, surgical approaches, and regenerative approaches will be explored.
机译:退伍军人事务部和国家卫生院部门已经在过去25岁时推进了假体技术的大大投入了大幅投入,其全体意图改善服务成员,退伍军人和所有人的生活职能,参与和生活质量美国公民生活在肢体损失。这些投资对过去十年来对假肢装置的控制和感官感知的巨大进步做出了贡献。虽然自20世纪80年代以来,通过使用肌电图来控制电动假体装置的控制,但这种技术并不直观。此外,这些系统不提供感官感知的刺激。最近的研究不仅在直观地使用肌电图进行控制方面取得了重大进步,而且还可以通过各种刺激方法提供相关的有意义感知的能力。虽然以前的大部分工作传统上专注于上肢截肢的那些,但新的发展包括高级双向神经调节剂,适用于上肢和下肢截肢。本综述的目标是审查对假肢装置的直观控制和感觉的领域,讨论未来探索领域的科学状态。将探讨外部系统,植入系统,手术方法和再生方法的目前的研究和开发工作。

著录项

  • 来源
    《Biomedical Engineering Letters》 |2020年第1期|共10页
  • 作者单位

    1grid.420176.6Clinical and Rehabilitative Medicine Research ProgramUS Army Medical Research and Development Command21702Fort DetrickMDUSA;

    2grid.94365.3d0000 0001 2297 5165National Institute of Child Health and Human DevelopmentNational Institute of Health20817BethesdaMDUSA;

    3grid.421816.80000 0000 9580 5207Defense Advanced Research Projects Agency22203ArlingtonVAUSA;

    4grid.94365.3d0000 0001 2297 5165National Institute of Neurological Disorders and StrokeNational Institute of Health20892BethesdaMDUSA;

    5ECS22031FairfaxVAUSA;

    6grid.94365.3d0000 0001 2297 5165National Institute of Biomedical Imaging and BioengineeringNational Institute of Health20817BethesdaMDUSA;

    7grid.484325.cVA Office of Research and Development20002WashingtonDCUSA;

    6grid.94365.3d0000 0001 2297 5165National Institute of Biomedical Imaging and BioengineeringNational Institute of Health20817BethesdaMDUSA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Limb loss; Peripheral nerve; Muscle; Osseointegration; Brain–machine interface; Regenerative;

    机译:肢体损失;周围神经;肌肉;骨整合;脑机界面;再生;
  • 入库时间 2022-08-19 23:05:41

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