Literature DB >> 20138788

Robotic-assisted treadmill therapy improves walking and standing performance in children and adolescents with cerebral palsy.

Ingo Borggraefe1, Jan Simon Schaefer, Mirjam Klaiber, Edward Dabrowski, Corinne Ammann-Reiffer, Beat Knecht, Steffen Berweck, Florian Heinen, Andreas Meyer-Heim.   

Abstract

OBJECTIVE: Task-specific body-weight-supported treadmill therapy improves walking performance in children with central gait impairment. The aim of the study was to investigate the effect of robotic-assisted treadmill therapy on standing and walking performance in children and adolescents with cerebral palsy and to determine parameters influencing outcome.
METHODS: 20 Patients (mean age 11.0 ± 5.1, 10 males and 10 females) with cerebral palsy underwent 12 sessions of robotic-assisted treadmill therapy using the driven gait orthosis Lokomat. Outcome measures were the dimensions D (standing) and E (walking) of the Gross Motor Function Measure (GMFM).
RESULTS: Significant improvements in dimension D by 5.9% (± 5.2, p=0.001) and dimension E by 5.3% (± 5.6, p<0.001) of the GMFM were achieved. Improvements in the GMFM D and E were significantly greater in the mildly affected cohort (GMFCS I and II) compared to the more severely affected cohort (GMFCS III and IV). Improvement of the dimension E but not of D correlated positively with the total distance and time walked during the trial (r(s)=0.748, p<0.001).
CONCLUSIONS: Children and adolescents with bilateral spastic cerebral palsy showed improvements in the functional tasks of standing and walking after a 3-week trial of robotic-assisted treadmill therapy. The severity of motor impairment affects the amount of the achieved improvement.
Copyright © 2010 European Paediatric Neurology Society. Published by Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20138788     DOI: 10.1016/j.ejpn.2010.01.002

Source DB:  PubMed          Journal:  Eur J Paediatr Neurol        ISSN: 1090-3798            Impact factor:   3.140


  20 in total

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2.  Short-burst interval treadmill training walking capacity and performance in cerebral palsy: a pilot study.

Authors:  Kristie F Bjornson; Noelle Moreau; Amy Winter Bodkin
Journal:  Dev Neurorehabil       Date:  2018-04-16       Impact factor: 2.308

3.  Reliability of the Motor Learning Strategies Rating Instrument in physiotherapy intervention for children with cerebral palsy.

Authors:  Jennifer L Ryan; Danielle E Levac; F Virginia Wright
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4.  The effects of robotic gait neurorehabilitation and focal vibration combined treatment in adult cerebral palsy.

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Journal:  Neurol Sci       Date:  2019-06-16       Impact factor: 3.307

5.  Gait changes following robot-assisted gait training in children with cerebral palsy.

Authors:  D Žarković; M Šorfová; J J Tufano; P Kutílek; S Vítečková; D Ravnik; K Groleger-Sršen; I Cikajlo; J Otáhal
Journal:  Physiol Res       Date:  2021-12-31       Impact factor: 1.881

6.  Adaptive Ankle Resistance from a Wearable Robotic Device to Improve Muscle Recruitment in Cerebral Palsy.

Authors:  Benjamin C Conner; Jason Luque; Zachary F Lerner
Journal:  Ann Biomed Eng       Date:  2020-01-16       Impact factor: 3.934

7.  Comparison of the effectiveness of partial body weight-supported treadmill exercises, robotic-assisted treadmill exercises, and anti-gravity treadmill exercises in spastic cerebral palsy.

Authors:  Berke Aras; Evren Yaşar; Serdar Kesikburun; Duygu Türker; Fatih Tok; Bilge Yılmaz
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8.  Mechanically assisted walking training for walking, participation, and quality of life in children with cerebral palsy.

Authors:  Hsiu-Ching Chiu; Louise Ada; Theofani A Bania
Journal:  Cochrane Database Syst Rev       Date:  2020-11-18

Review 9.  Molecular mechanisms of treadmill therapy on neuromuscular atrophy induced via botulinum toxin A.

Authors:  Sen-Wei Tsai; Hsiao-Ling Chen; Yi-Chun Chang; Chuan-Mu Chen
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10.  Evaluation of the effectiveness of robotic gait training and gait-focused physical therapy programs for children and youth with cerebral palsy: a mixed methods RCT.

Authors:  Lesley Wiart; Rhonda J Rosychuk; F Virginia Wright
Journal:  BMC Neurol       Date:  2016-06-02       Impact factor: 2.474

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