Upper body movements in children with hemiplegic cerebral palsy walking with and without an ankle–foot orthosis
Author:
Publisher
Elsevier BV
Subject
Orthopedics and Sports Medicine,Biophysics
Reference24 articles.
1. Identification and classification of toe-walkers based on ankle kinematics, using a data-mining method;Armand;Gait Posture,2006
2. The effect of hinged ankle–foot orthosis on gait and energy expenditure in spastic hemiplegic cerebral palsy;Balaban;Disabil. Rehabil.,2007
3. Comparison of a stiff and a spring-type ankle–foot orthosis to improve gait in spastic hemiplegic children;Brunner;J. Pediatr. Orthop.,1998
4. Comparison of three ankle–foot orthosis configurations for children with spastic hemiplegia;Buckon;Dev. Med. Child Neurol.,2001
5. Reflections on clinical gait analysis;Davis;J. Electromyogr. Kinesiol.,1997
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1. Exploring the rationale for prescribing ankle–foot orthoses and supramalleolar orthoses in children with cerebral palsy: A narrative synthesis of rationale statements;Prosthetics & Orthotics International;2023-10-13
2. The effect of vibration-hinged ankle foot orthoses on gait and spasticity in children with cerebral palsy: A randomized clinical trial design;Prosthetics & Orthotics International;2023-09-14
3. Passive Articulated and Non-Articulated Ankle–Foot Orthoses for Gait Rehabilitation: A Narrative Review;Healthcare;2023-03-24
4. Efficacy of foot-ankle orthosis on balance for children with hemiplegic cerebral palsy: An observational study;Turkish Journal of Physical Medicine and Rehabilitation;2021-09-01
5. Ankle–foot orthosis with dorsiflexion resistance using spring-cam mechanism increases knee flexion in the swing phase during walking in stroke patients with hemiplegia;Gait & Posture;2020-09
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