Literature DB >> 27479974

A Robotic Exoskeleton for Treatment of Crouch Gait in Children With Cerebral Palsy: Design and Initial Application.

Zachary F Lerner, Diane L Damiano, Hyung-Soon Park, Andrew J Gravunder, Thomas C Bulea.   

Abstract

Crouch gait, a pathological pattern of walking characterized by excessive knee flexion, is one of the most common gait disorders observed in children with cerebral palsy (CP). Effective treatment of crouch during childhood is critical to maintain mobility into adulthood, yet current interventions do not adequately alleviate crouch in most individuals. Powered exoskeletons provide an untapped opportunity for intervention. The multiple contributors to crouch, including spasticity, contracture, muscle weakness, and poor motor control make design and control of such devices challenging in this population. To our knowledge, no evidence exists regarding the feasibility or efficacy of utilizing motorized assistance to alleviate knee flexion in crouch gait. Here, we present the design of and first results from a powered exoskeleton for extension assistance as a treatment for crouch gait in children with CP. Our exoskeleton, based on the architecture of a knee-ankle-foot orthosis, is lightweight (3.2 kg) and modular. On board sensors enable knee extension assistance to be provided during distinct phases of the gait cycle. We tested our device on one six-year-old male participant with spastic diplegia from CP. Our results show that the powered exoskeleton improved knee extension during stance by 18.1° while total knee range of motion improved 21.0°. Importantly, we observed no significant decrease in knee extensor muscle activity, indicating the user did not rely solely on the exoskeleton to extend the limb. These results establish the initial feasibility of robotic exoskeletons for treatment of crouch and provide impetus for continued investigation of these devices with the aim of deployment for long term gait training in this population.

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Year:  2016        PMID: 27479974     DOI: 10.1109/TNSRE.2016.2595501

Source DB:  PubMed          Journal:  IEEE Trans Neural Syst Rehabil Eng        ISSN: 1534-4320            Impact factor:   3.802


  16 in total

1.  A hinge-free, non-restrictive, lightweight tethered exosuit for knee extension assistance during walking.

Authors:  Evelyn J Park; Tunc Akbas; Asa Eckert-Erdheim; Lizeth H Sloot; Richard W Nuckols; Dorothy Orzel; Lexine Schumm; Terry D Ellis; Louis N Awad; Conor J Walsh
Journal:  IEEE Trans Med Robot Bionics       Date:  2020-04-21

2.  Computational modeling of neuromuscular response to swing-phase robotic knee extension assistance in cerebral palsy.

Authors:  Zachary F Lerner; Diane L Damiano; Thomas C Bulea
Journal:  J Biomech       Date:  2019-03-07       Impact factor: 2.712

Review 3.  Risk management and regulations for lower limb medical exoskeletons: a review.

Authors:  Yongtian He; David Eguren; Trieu Phat Luu; Jose L Contreras-Vidal
Journal:  Med Devices (Auckl)       Date:  2017-05-09

4.  The Effects of Exoskeleton Assisted Knee Extension on Lower-Extremity Gait Kinematics, Kinetics, and Muscle Activity in Children with Cerebral Palsy.

Authors:  Zachary F Lerner; Diane L Damiano; Thomas C Bulea
Journal:  Sci Rep       Date:  2017-10-18       Impact factor: 4.379

Review 5.  Knee Joint Biomechanics in Physiological Conditions and How Pathologies Can Affect It: A Systematic Review.

Authors:  Li Zhang; Geng Liu; Bing Han; Zhe Wang; Yuzhou Yan; Jianbing Ma; Pingping Wei
Journal:  Appl Bionics Biomech       Date:  2020-04-03       Impact factor: 1.781

6.  Toward a hybrid exoskeleton for crouch gait in children with cerebral palsy: neuromuscular electrical stimulation for improved knee extension.

Authors:  Blynn L Shideler; Thomas C Bulea; Ji Chen; Christopher J Stanley; Andrew J Gravunder; Diane L Damiano
Journal:  J Neuroeng Rehabil       Date:  2020-09-03       Impact factor: 4.262

7.  A Novel User Control for Lower Extremity Rehabilitation Exoskeletons.

Authors:  Kiran K Karunakaran; Kevin Abbruzzese; Ghaith Androwis; Richard A Foulds
Journal:  Front Robot AI       Date:  2020-09-08

8.  Systematic review on wearable lower-limb exoskeletons for gait training in neuromuscular impairments.

Authors:  Antonio Rodríguez-Fernández; Joan Lobo-Prat; Josep M Font-Llagunes
Journal:  J Neuroeng Rehabil       Date:  2021-02-01       Impact factor: 4.262

9.  Feasibility of Augmenting Ankle Exoskeleton Walking Performance With Step Length Biofeedback in Individuals With Cerebral Palsy.

Authors:  Ying Fang; Zachary F Lerner
Journal:  IEEE Trans Neural Syst Rehabil Eng       Date:  2021-03-02       Impact factor: 3.802

10.  A Pediatric Knee Exoskeleton With Real-Time Adaptive Control for Overground Walking in Ambulatory Individuals With Cerebral Palsy.

Authors:  Ji Chen; Jon Hochstein; Christina Kim; Luke Tucker; Lauren E Hammel; Diane L Damiano; Thomas C Bulea
Journal:  Front Robot AI       Date:  2021-06-18
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