The immediate effects of foot orthosis geometry on lower limb muscle activity and foot biomechanics
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference39 articles.
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3. Tibialis Posterior Tenosynovitis and Associated Pes Plano Valgus in Rheumatoid Arthritis: Electromyography, Multisegment Foot Kinematics, and Ultrasound Features;Barn;Arthritis Care Res. (Hoboken),2013
4. Consensus for experimental design in electromyography (CEDE) project: Electrode selection matrix;Besomi;J. Electromyogr. Kinesiol.,2019
5. A method to investigate the effect of shoe-hole size on surface marker movement when describing in-shoe joint kinematics using a multi-segment foot model;Bishop;Gait Posture,2015
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1. Toward subtalar joint axis–driven computer-aided design and computer-aided manufacturing foot orthoses: Reliability of a noninvasive clinical scanning protocol;Prosthetics & Orthotics International;2024-03-22
2. Medially wedged foot orthoses generate greater biomechanical effects than thin-flexible foot orthoses during a unilateral drop jump task on level and inclined surfaces;Clinical Biomechanics;2024-02
3. The effect of varus rearfoot wedges on hallux dorsiflexion resistance;BMC Musculoskeletal Disorders;2024-01-22
4. Peroneus Tendon Disorders: Evaluation and Non-operative Management;Current Physical Medicine and Rehabilitation Reports;2023-03-11
5. Thick shells and medially wedged posts increase foot orthoses medial longitudinal arch stiffness: an experimental study;Journal of Foot and Ankle Research;2023-01
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