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设计一种贴身穿、无需动力的踝关节外骨骼,克服广泛社会应用的实际障碍。

Design of a Low Profile, Unpowered Ankle Exoskeleton That Fits Under Clothes: Overcoming Practical Barriers to Widespread Societal Adoption.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2019 Apr;27(4):712-723. doi: 10.1109/TNSRE.2019.2904924. Epub 2019 Mar 14.

Abstract

Here, we present the design of a novel unpowered ankle exoskeleton that is low profile, lightweight, quiet, and low cost to manufacture, intrinsically adapts to different walking speeds, and does not restrict non-sagittal joint motion; while still providing assistive ankle torque that can reduce demands on the biological calf musculature. This paper is an extension of the previously-successful ankle exoskeleton concept by Collins, Wiggin, and Sawicki. We created a device that blends the torque assistance of the prior exoskeleton with the form-factor benefits of clothing. Our design integrates a low profile under-the-foot clutch and a soft conformal shank interface, coupled by an ankle assistance spring that operates in parallel with the user's calf muscles. We fabricated and characterized technical performance of a prototype through benchtop testing and then validated device functionality in two gait analysis case studies. To our knowledge, this is the first ankle plantarflexion assistance exoskeleton that could be feasibly worn under typical daily clothing, without restricting ankle motion, and without components protruding substantially from the shoe, leg, waist, or back. Our new design highlights the potential for performance-enhancing exoskeletons that are inexpensive, unobtrusive, and can be used on a wide scale to benefit a broad range of individuals throughout society, such as the elderly, individuals with impaired plantarflexor muscle strength, or recreational users. In summary, this paper demonstrates how an unpowered ankle exoskeleton could be redesigned to more seamlessly integrate into daily life, while still providing performance benefits for common locomotion tasks.

摘要

在这里,我们提出了一种新型的无源踝关节外骨骼的设计,它具有低轮廓、重量轻、安静且制造成本低的特点,能够自适应不同的行走速度,并且不会限制矢状面以外的关节运动;同时还提供辅助踝关节扭矩,可以减轻生物小腿肌肉的需求。本文是 Collins、Wiggin 和 Sawicki 之前成功的踝关节外骨骼概念的延伸。我们创建了一个将先前外骨骼的扭矩辅助功能与服装的外形优势相结合的设备。我们的设计集成了一个低轮廓的足底离合器和一个柔软的贴合腿型接口,通过一个与用户小腿肌肉并联工作的踝关节辅助弹簧进行连接。我们通过台式测试制造并表征了原型的技术性能,然后通过两项步态分析案例研究验证了设备的功能。据我们所知,这是第一个可在日常服装下穿着、不限制踝关节运动、且没有部件从鞋、腿、腰部或背部明显突出的可穿戴式踝关节跖屈辅助外骨骼。我们的新设计强调了具有成本效益、不引人注目的性能增强型外骨骼的潜力,这些外骨骼可以大规模使用,使社会各界广泛受益,如老年人、足底屈肌力量受损的人或娱乐用户。总之,本文展示了如何重新设计无源踝关节外骨骼,使其更无缝地融入日常生活,同时仍为常见的运动任务提供性能优势。

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