NOHAS:由伺服电机和移动应用程序驱动的新型中风康复矫形手

IF 2.9 Q2 ROBOTICS
Robotics Pub Date : 2023-12-08 DOI:10.3390/robotics12060169
Ebenezer Raj Selvaraj Mercyshalinie, A. Ghadge, N. Ifejika, Yonas T. Tadesse
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引用次数: 0

摘要

中风发生后的康复过程主要是帮助患者恢复行动能力、交流技能、吞咽功能和日常生 活活动(ADLs)。这完全取决于受中风影响的大脑特定区域。患者可以学习如何使用适应性设备,恢复运动能力,并通过某些重复性练习和治疗干预减少肌肉痉挛。这些练习可以通过在受损肢体上佩戴柔软的机器人手套来完成。针对中风后康复,我们设计并鉴定了一种交互式手部矫形器,该矫形器具有由伺服电机驱动的肌腱驱动手指执行机制,由织物手套和顶端的力敏电阻器(FSR)组成。当用户使用手机进行操作时,该机器人装置会移动用户的手,以复制正常的抓握行为。本文针对每个手指的近端指间关节(PIP)、远端指间关节(DIP)和掌指关节(MCP),分析了手指响应移动应用程序的步进输入指令时的运动特征。一般来说,基于伺服电机的手部矫形器具有很高的能效,但在驱动过程中会产生噪音。在此,我们对伺服电机驱动每个手指以及同时驱动一组手指时产生的噪音进行了量化。为了测试 ADL 能力,我们评估了该装置在握住行动研究手臂测试(ARAT)套件中不同物体时的有效性。我们的设备--由伺服电机驱动的新型手部矫形器(NOHAS)在十名健康人体受试者身上进行了测试,结果显示在抓握任务中平均成功率达到 90%。我们的矫形手因其简单易用、结构轻巧和精心设计的部件,有望帮助中风后的受试者恢复健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NOHAS: A Novel Orthotic Hand Actuated by Servo Motors and Mobile App for Stroke Rehabilitation
The rehabilitation process after the onset of a stroke primarily deals with assisting in regaining mobility, communication skills, swallowing function, and activities of daily living (ADLs). This entirely depends on the specific regions of the brain that have been affected by the stroke. Patients can learn how to utilize adaptive equipment, regain movement, and reduce muscle spasticity through certain repetitive exercises and therapeutic interventions. These exercises can be performed by wearing soft robotic gloves on the impaired extremity. For post-stroke rehabilitation, we have designed and characterized an interactive hand orthosis with tendon-driven finger actuation mechanisms actuated by servo motors, which consists of a fabric glove and force-sensitive resistors (FSRs) at the tip. The robotic device moves the user’s hand when operated by mobile phone to replicate normal gripping behavior. In this paper, the characterization of finger movements in response to step input commands from a mobile app was carried out for each finger at the proximal interphalangeal (PIP), distal interphalangeal (DIP), and metacarpophalangeal (MCP) joints. In general, servo motor-based hand orthoses are energy-efficient; however, they generate noise during actuation. Here, we quantified the noise generated by servo motor actuation for each finger as well as when a group of fingers is simultaneously activated. To test ADL ability, we evaluated the device’s effectiveness in holding different objects from the Action Research Arm Test (ARAT) kit. Our device, novel hand orthosis actuated by servo motors (NOHAS), was tested on ten healthy human subjects and showed an average of 90% success rate in grasping tasks. Our orthotic hand shows promise for aiding post-stroke subjects recover because of its simplicity of use, lightweight construction, and carefully designed components.
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来源期刊
Robotics
Robotics Mathematics-Control and Optimization
CiteScore
6.70
自引率
8.10%
发文量
114
审稿时长
11 weeks
期刊介绍: Robotics publishes original papers, technical reports, case studies, review papers and tutorials in all the aspects of robotics. Special Issues devoted to important topics in advanced robotics will be published from time to time. It particularly welcomes those emerging methodologies and techniques which bridge theoretical studies and applications and have significant potential for real-world applications. It provides a forum for information exchange between professionals, academicians and engineers who are working in the area of robotics, helping them to disseminate research findings and to learn from each other’s work. Suitable topics include, but are not limited to: -intelligent robotics, mechatronics, and biomimetics -novel and biologically-inspired robotics -modelling, identification and control of robotic systems -biomedical, rehabilitation and surgical robotics -exoskeletons, prosthetics and artificial organs -AI, neural networks and fuzzy logic in robotics -multimodality human-machine interaction -wireless sensor networks for robot navigation -multi-sensor data fusion and SLAM
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