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感觉运动整合双向仿生假肢手臂的长期家庭使用促进功能、感知和认知变化。

Long-Term Home-Use of Sensory-Motor-Integrated Bidirectional Bionic Prosthetic Arms Promotes Functional, Perceptual, and Cognitive Changes.

作者信息

Schofield Jonathon S, Shell Courtney E, Beckler Dylan T, Thumser Zachary C, Marasco Paul D

机构信息

Department of Mechanical and Aerospace Engineering, University of California, Davis, Davis, CA, United States.

Department of Biomedical Engineering, Lerner Research Institute-Cleveland Clinic, Cleveland, OH, United States.

出版信息

Front Neurosci. 2020 Feb 19;14:120. doi: 10.3389/fnins.2020.00120. eCollection 2020.

Abstract

Cutaneous sensation is vital to controlling our hands and upper limbs. It helps close the motor control loop by informing adjustments of grasping forces during object manipulations and provides much of the information the brain requires to perceive our limbs as a part of our bodies. This sensory information is absent to upper-limb prosthesis users. Although robotic prostheses are becoming increasingly sophisticated, the absence of feedback imposes a reliance on open-loop control and limits the functional potential as an integrated part of the body. Experimental systems to restore physiologically relevant sensory information to prosthesis users are beginning to emerge. However, the impact of their long-term use on functional abilities, body image, and neural adaptation processes remains unclear. Understanding these effects is essential to transition sensate prostheses from sophisticated assistive tools to integrated replacement limbs. We recruited three participants with high-level upper-limb amputation who previously received targeted reinnervation surgery. Each participant was fit with a neural-machine-interface prosthesis that allowed participants to operate their device by thinking about moving their missing limb. Additionally, we fit a sensory feedback system that allowed participants to experience touch to the prosthesis as touch on their missing limb. All three participants performed a long-term take-home trial. Two participants used their neural-machine-interface systems with touch feedback and one control participant used his prescribed, insensate prosthesis. A series of functional outcome metrics and psychophysical evaluations were performed using sensate neural-machine-interface prostheses before and after the take-home period to capture changes in functional abilities, limb embodiment, and neural adaptation. Our results demonstrated that the relationship between users and sensate neural-machine-interface prostheses is dynamic and changes with long-term use. The presence of touch sensation had a near-immediate impact on how the users operated their prostheses. In the multiple independent measures of users' functional abilities employed, we observed a spectrum of performance changes following long-term use. Furthermore, after the take-home period, participants more appropriately integrated their prostheses into their body images and psychophysical tests provided strong evidence that neural and cortical adaptation occurred.

摘要

皮肤感觉对于控制我们的手部和上肢至关重要。它通过在物体操作过程中告知抓握力的调整来帮助闭合运动控制回路,并提供大脑将我们的肢体视为身体一部分所需的大部分信息。上肢假肢使用者缺乏这种感觉信息。尽管机器人假肢越来越复杂,但缺乏反馈使得依赖开环控制,并限制了其作为身体一部分的功能潜力。恢复与生理相关的感觉信息给假肢使用者的实验系统开始出现。然而,它们长期使用对功能能力、身体形象和神经适应过程的影响仍不清楚。了解这些影响对于将有感觉的假肢从复杂的辅助工具转变为集成的替代肢体至关重要。我们招募了三名接受过高位上肢截肢且之前接受过靶向神经再支配手术的参与者。每位参与者都佩戴了神经机器接口假肢,使他们能够通过想象移动缺失的肢体来操作设备。此外,我们安装了一个感觉反馈系统,让参与者将假肢上的触摸体验为缺失肢体上的触摸。所有三名参与者都进行了长期的带回家试用。两名参与者使用带有触摸反馈的神经机器接口系统,一名对照参与者使用他规定的无感觉假肢。在带回家试用前后,使用有感觉的神经机器接口假肢进行了一系列功能结果指标和心理物理学评估,以捕捉功能能力、肢体体现和神经适应的变化。我们的结果表明,使用者与有感觉的神经机器接口假肢之间的关系是动态的,并且会随着长期使用而变化。触摸感觉的存在对使用者操作假肢的方式几乎立即产生了影响。在采用的对使用者功能能力的多项独立测量中,我们观察到长期使用后性能变化的范围。此外,在带回家试用期之后,参与者更适当地将他们的假肢整合到他们的身体形象中,并且心理物理学测试提供了有力证据表明发生了神经和皮层适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5285/7042391/c85d53a3eca6/fnins-14-00120-g001.jpg

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