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顺应性下肢外骨骼:机械设计原理的综合评述。

Compliant lower limb exoskeletons: a comprehensive review on mechanical design principles.

机构信息

Neural Rehabilitation Group, Cajal Institute, Spanish National Research Council (CSIC), Avda Doctor Arce, 37, E-28002, Madrid, Spain.

出版信息

J Neuroeng Rehabil. 2019 May 9;16(1):55. doi: 10.1186/s12984-019-0517-9.

Abstract

Exoskeleton technology has made significant advances during the last decade, resulting in a considerable variety of solutions for gait assistance and rehabilitation. The mechanical design of these devices is a crucial aspect that affects the efficiency and effectiveness of their interaction with the user. Recent developments have pointed towards compliant mechanisms and structures, due to their promising potential in terms of adaptability, safety, efficiency, and comfort. However, there still remain challenges to be solved before compliant lower limb exoskeletons can be deployed in real scenarios. In this review, we analysed 52 lower limb wearable exoskeletons, focusing on three main aspects of compliance: actuation, structure, and interface attachment components. We highlighted the drawbacks and advantages of the different solutions, and suggested a number of promising research lines. We also created and made available a set of data sheets that contain the technical characteristics of the reviewed devices, with the aim of providing researchers and end-users with an updated overview on the existing solutions.

摘要

外骨骼技术在过去十年中取得了重大进展,为步态辅助和康复提供了多种解决方案。这些设备的机械设计是一个关键方面,影响着它们与用户交互的效率和效果。由于在适应性、安全性、效率和舒适性方面具有很大的潜力,最近的发展趋势指向了柔顺机构和结构。然而,在柔顺下肢外骨骼能够在实际场景中部署之前,仍然存在一些需要解决的挑战。在这篇综述中,我们分析了 52 种下肢可穿戴外骨骼,重点关注顺应性的三个主要方面:驱动、结构和接口连接组件。我们强调了不同解决方案的缺点和优点,并提出了一些有前途的研究方向。我们还创建并提供了一组数据表,其中包含所审查设备的技术特征,目的是为研究人员和最终用户提供现有解决方案的最新概述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dc8/6506961/9dba99df7178/12984_2019_517_Fig1_HTML.jpg

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