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Design, Modeling, and Demonstration of a New Dual-Mode Back-Assist Exosuit with Extension Mechanism.一种具有伸展机构的新型双模式背部辅助外骨骼套装的设计、建模与演示
Wearable Technol. 2021;2. doi: 10.1017/wtc.2021.1. Epub 2021 Mar 24.
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Effects of industrial back-support exoskeletons on body loading and user experience: an updated systematic review.工业背部支撑外骨骼对身体负荷和用户体验的影响:最新系统评价。
Ergonomics. 2021 Jun;64(6):685-711. doi: 10.1080/00140139.2020.1870162. Epub 2021 Mar 16.
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Biomechanical comparisons of back and front squats with a straight bar and four squats with a transformer bar.直杠后深蹲、前深蹲与变距杆深蹲 4 种方式的生物力学比较。
Sports Biomech. 2024 Feb;23(2):166-181. doi: 10.1080/14763141.2020.1832563. Epub 2020 Nov 9.
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Low-profile elastic exosuit reduces back muscle fatigue.低轮廓弹性外骨骼可减少背部肌肉疲劳。
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Biomechanical evaluation of a new passive back support exoskeleton.一种新型被动式背部支撑外骨骼的生物力学评估
J Biomech. 2020 May 22;105:109795. doi: 10.1016/j.jbiomech.2020.109795. Epub 2020 Apr 18.
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Short-Term Effects of a Passive Spinal Exoskeleton on Functional Performance, Discomfort and User Satisfaction in Patients with Low Back Pain.被动式脊柱外骨骼对腰痛患者功能表现、不适和用户满意度的短期影响。
J Occup Rehabil. 2021 Mar;31(1):142-152. doi: 10.1007/s10926-020-09899-7.
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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。
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Validation of a wearable system for 3D ambulatory L5/S1 moment assessment during manual lifting using instrumented shoes and an inertial sensor suit.使用带仪器的鞋子和惯性传感器服验证可穿戴系统在手动举升过程中对 L5/S1 节段的三维运动学和力矩评估的准确性。
J Biomech. 2020 Mar 26;102:109671. doi: 10.1016/j.jbiomech.2020.109671. Epub 2020 Jan 31.
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A Pilot Study of Varying Thoracic and Abdominal Compression in a Reconfigurable Trunk Exoskeleton During Different Activities.变刚度躯干外骨骼在不同活动中改变胸腹部压缩的初步研究。
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评估 HeroWear Apex 背部辅助外骨骼在多项短暂任务中的表现。

Evaluation of the HeroWear Apex back-assist exosuit during multiple brief tasks.

机构信息

Department of Electrical and Computer Engineering, University of Wyoming.

Division of Kinesiology and Health, University of Wyoming.

出版信息

J Biomech. 2021 Sep 20;126:110620. doi: 10.1016/j.jbiomech.2021.110620. Epub 2021 Jul 9.

DOI:10.1016/j.jbiomech.2021.110620
PMID:34293602
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8453127/
Abstract

Trunk exoskeletons are wearable devices that support humans during physically demanding tasks by reducing biomechanical loads on the back. While most trunk exoskeletons are rigid devices, more lightweight soft exoskeletons (exosuits) have recently been developed. One such exosuit is the HeroWear Apex, which achieved promising results in the developers' own work but has not been independently evaluated. This paper thus presents an evaluation of the Apex with 20 adult participants during multiple brief tasks: standing up from a stool with a symmetric or asymmetric load, lifting a unilateral or bilateral load from the floor to waist level, lifting the same bilateral load with a 90-degree turn to the right, lowering a bilateral load from waist level to floor, and walking while carrying a bilateral load. The tasks were performed in an ABA-style protocol: first with exosuit assistance disengaged, then with it engaged, then disengaged again. Four measurement types were taken: electromyography (of the erector spinae, rectus abdominis, and middle trapezius), trunk kinematics, self-report ratings, and heart rate. The exosuit decreased the erector spinae electromyogram by about 15% during object lifting and lowering tasks; furthermore, participants found the exosuit mildly to moderately helpful. No adverse effects on other muscles or during non-lifting tasks were noted, and a decrease in middle trapezius electromyogram was observed for one task. This confirms that the HeroWear Apex could reduce muscle demand and fatigue. The results may transfer to other exoskeletons with similar design principles, and may inform researchers working with other wearable devices.

摘要

躯干外骨骼是一种可穿戴设备,通过减少背部的生物力学负荷,在体力要求高的任务中为人类提供支持。虽然大多数躯干外骨骼是刚性设备,但最近已经开发出更轻便的软外骨骼(外骨骼套装)。其中一种外骨骼套装是 HeroWear Apex,它在开发者自己的工作中取得了有希望的结果,但尚未进行独立评估。因此,本文介绍了对 20 名成年参与者在多项短暂任务中的 Apex 评估:从有对称或不对称负载的凳子上站起来,从地板上提起单侧或双侧负载到腰部水平,将相同的双侧负载向右 90 度转弯提起,将双侧负载从腰部水平降低到地板,以及携带双侧负载行走。任务以 ABA 式方案进行:首先不使用外骨骼辅助,然后使用,然后再次不使用。进行了四种测量类型:肌电图(竖脊肌、腹直肌和中斜方肌)、躯干运动学、自我报告评级和心率。外骨骼在物体升降任务中使竖脊肌肌电图降低了约 15%;此外,参与者认为外骨骼轻度到中度有帮助。在非举重任务中没有观察到对其他肌肉的不良影响,并且在一项任务中观察到中斜方肌肌电图减少。这证实了 HeroWear Apex 可以减少肌肉需求和疲劳。结果可能适用于具有类似设计原理的其他外骨骼,并且可能为研究其他可穿戴设备的研究人员提供信息。