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迈向对FLEXotendon手套III的全面评估:儿科临床病例和健全成年人的病例系列评估

Towards comprehensive evaluation of the FLEXotendon glove-III: a case series evaluation in pediatric clinical cases and able-bodied adults.

作者信息

Tran Phillip, Elliott Drew, Herrin Kinsey, Desai Jaydev P

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology, Atlanta, Georgia.

Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, Georgia.

出版信息

Biomed Eng Lett. 2023 Apr 28;13(3):485-494. doi: 10.1007/s13534-023-00280-0. eCollection 2023 Aug.

Abstract

Injuries involving the nervous system, such as a brachial plexus palsy or traumatic brain injury, can lead to impairment in the functionality of the hand. Assistive robotics have been proposed as a possible method to improve patient outcomes in rehabilitation. The work presented here evaluates the FLEXotendon Glove-III, a 5 degree-of-freedom, voice-controlled, tendon-driven soft robotic hand exoskeleton, with two human subjects with hand impairments and four able-bodied subjects. The FLEXotendon Glove-III was evaluated on four unimpaired subjects, in conjunction with EMG sensor data, to determine the quantitative performance of the glove in applied pinch force, perturbation resistance, and exertion reduction. The exoskeleton system was also evaluated on two subjects with hand impairments, using two standardized hand function tests, the Jebsen-Taylor Hand Function Test and the Toronto Rehabilitation Institute Hand Function Test. The subjects were also presented with three qualitative questionnaires, the Capabilities of Upper Extremities Questionnaire, the Quebec User Evaluation of Satisfaction with Assistive Technology, and the Orthotics Prosthetics User Survey-Satisfaction module. From the previous design, minor design changes were made to the exoskeleton. The quick connect system was redesigned for improved performance, the number of motors was reduced to decrease overall footprint, and the entire system was placed into a compact acrylic case that can be placed into a backpack for increased portability.

摘要

涉及神经系统的损伤,如臂丛神经麻痹或创伤性脑损伤,可导致手部功能受损。辅助机器人技术已被提议作为一种可能改善康复患者预后的方法。本文介绍的工作对FLEXotendon Glove-III进行了评估,这是一种5自由度、语音控制、肌腱驱动的软机器人手部外骨骼,评估对象包括两名手部有损伤的受试者和四名身体健全的受试者。FLEXotendon Glove-III在四名身体健全的受试者身上进行了评估,并结合肌电图传感器数据,以确定该手套在施加捏力、抗扰动和减少用力方面的定量性能。还使用两项标准化手部功能测试,即杰布森-泰勒手部功能测试和多伦多康复研究所手部功能测试,对两名手部有损伤的受试者的外骨骼系统进行了评估。还向受试者发放了三份定性问卷,即上肢能力问卷、魁北克辅助技术用户满意度评估问卷和矫形器假肢用户调查-满意度模块。根据之前的设计,对外骨骼进行了一些小的设计改进。重新设计了快速连接系统以提高性能,减少了电机数量以减小整体占地面积,并将整个系统放入一个紧凑的亚克力盒中,该盒子可以放入背包中以提高便携性。

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本文引用的文献

1
Evaluation of the FLEXotendon glove-III through a human subject case study.通过人体受试者案例研究对FLEXotendon手套III进行评估。
Biomed Eng Lett. 2023 Jan 27;13(2):153-163. doi: 10.1007/s13534-023-00262-2. eCollection 2023 May.
4
Improving Grasp Function After Spinal Cord Injury With a Soft Robotic Glove.使用软机器人手套改善脊髓损伤后的抓握功能。
IEEE Trans Neural Syst Rehabil Eng. 2020 Jun;28(6):1407-1415. doi: 10.1109/TNSRE.2020.2988260. Epub 2020 Apr 16.
7
Use of proper statistical techniques for research studies with small samples.对小样本研究使用适当的统计技术。
Am J Physiol Lung Cell Mol Physiol. 2017 Nov 1;313(5):L873-L877. doi: 10.1152/ajplung.00238.2017. Epub 2017 Oct 5.

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