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新型带仪器框架,供完全性脊髓损伤患者站立锻炼使用。

Novel instrumented frame for standing exercising of users with complete spinal cord injuries.

机构信息

School of Biological Sciences, University of Reading, Reading, UK.

School of Computing and Communications, Open University, Milton Keynes, UK.

出版信息

Sci Rep. 2019 Sep 10;9(1):13003. doi: 10.1038/s41598-019-49237-3.

Abstract

This paper describes a Functional Electrical Stimulation (FES) standing system for rehabilitation of bone mineral density (BMD) in people with Spinal Cord Injury (SCI). BMD recovery offers an increased quality of life for people with SCI by reducing their risk of fractures. The standing system developed comprises an instrumented frame equipped with force plates and load cells, a motion capture system, and a purpose built 16-channel FES unit. This system can simultaneously record and process a wide range of biomechanical data to produce muscle stimulation which enables users with SCI to safely stand and exercise. An exergame provides visual feedback to the user to assist with upper-body posture control during exercising. To validate the system an alternate weight-shift exercise was used; 3 participants with complete SCI exercised in the system for 1 hour twice-weekly for 6 months. We observed ground reaction forces over 70% of the full body-weight distributed to the supporting leg at each exercising cycle. Exercise performance improved for each participant by an increase of 13.88 percentage points of body-weight in the loading of the supporting leg during the six-month period. Importantly, the observed ground reaction forces are of higher magnitude than other studies which reported positive effects on BMD. This novel instrumentation aims to investigate weight bearing standing therapies aimed at determining the biomechanics of lower limb joint force actions and postural kinematics.

摘要

本文介绍了一种用于脊髓损伤(SCI)患者康复骨密度(BMD)的功能性电刺激(FES)站立系统。BMD 恢复通过降低 SCI 患者骨折风险,为他们提供更高的生活质量。所开发的站立系统包括配备力板和称重传感器的仪器框架、运动捕捉系统和定制的 16 通道 FES 单元。该系统可以同时记录和处理广泛的生物力学数据,以产生肌肉刺激,使 SCI 患者能够安全站立和锻炼。一款外骨骼游戏为用户提供视觉反馈,以帮助他们在锻炼过程中控制上半身姿势。为了验证该系统,我们使用了替代的重量转移运动;3 名完全性 SCI 患者在该系统中每周锻炼两次,每次 1 小时,持续 6 个月。我们观察到,在每个运动周期中,超过 70%的全身重量分布在支撑腿上。在 6 个月的时间里,每位参与者的运动表现都有所提高,支撑腿的承重增加了 13.88 个百分点。重要的是,所观察到的地面反力比其他报告对 BMD 有积极影响的研究更大。这种新型仪器旨在研究旨在确定下肢关节力作用和姿势运动学的承重站立治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab9d/6736978/d76a906bce4a/41598_2019_49237_Fig1_HTML.jpg

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