Literature DB >> 26050873

The Shank-to-Vertical-Angle as a parameter to evaluate tuning of Ankle-Foot Orthoses.

Yvette L Kerkum1, Han Houdijk2, Merel-Anne Brehm3, Annemieke I Buizer4, Manon L C Kessels5, Arjan Sterk5, Josien C van den Noort4, Jaap Harlaar4.   

Abstract

The effectiveness of an Ankle-Foot Orthosis footwear combination (AFO-FC) may be partly dependent on the alignment of the ground reaction force with respect to lower limb joint rotation centers, reflected by joint angles and moments. Adjusting (i.e. tuning) the AFO-FC's properties could affect this alignment, which may be guided by monitoring the Shank-to-Vertical-Angle. This study aimed to investigate whether the Shank-to-Vertical-Angle during walking responds to variations in heel height and footplate stiffness, and if this would reflect changes in joint angles and net moments in healthy adults. Ten subjects walked on an instrumented treadmill and performed six trials while walking with bilateral rigid Ankle-Foot Orthoses. The AFO-FC heel height was increased, aiming to impose a Shank-to-Vertical-Angle of 5°, 11° and 20°, and combined with a flexible or stiff footplate. For each trial, the Shank-to-Vertical-Angle, joint flexion-extension angles and net joint moments of the right leg at midstance were averaged over 25 gait cycles. The Shank-to-Vertical-Angle significantly increased with increasing heel height (p<0.001), resulting in an increase in knee flexion angle and internal knee extensor moment (p<0.001). The stiff footplate reduced the effect of heel height on the internal knee extensor moment (p=0.030), while the internal ankle plantar flexion moment increased (p=0.035). Effects of heel height and footplate stiffness on the hip joint were limited. Our results support the potential to use the Shank-to-Vertical-Angle as a parameter to evaluate AFO-FC tuning, as it is responsive to changes in heel height and reflects concomitant changes in the lower limb angles and moments.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Ankle-Foot Orthosis-Footwear Combination; Biomechanics; Footplate; Gait; Heel-sole differential

Mesh:

Year:  2015        PMID: 26050873     DOI: 10.1016/j.gaitpost.2015.05.016

Source DB:  PubMed          Journal:  Gait Posture        ISSN: 0966-6362            Impact factor:   2.840


  5 in total

1.  Accuracy and repeatability of smartphone sensors for measuring shank-to-vertical angle.

Authors:  Brandon T Nguyen; Nick A Baicoianu; Darrin B Howell; Keshia M Peters; Katherine M Steele
Journal:  Prosthet Orthot Int       Date:  2020-04-21       Impact factor: 1.895

2.  Examination of Inertial Sensor-Based Estimation Methods of Lower Limb Joint Moments and Ground Reaction Force: Results for Squat and Sit-to-Stand Movements in the Sagittal Plane.

Authors:  Jun Kodama; Takashi Watanabe
Journal:  Sensors (Basel)       Date:  2016-08-01       Impact factor: 3.576

3.  Stiffness modification of two ankle-foot orthosis types to optimize gait in individuals with non-spastic calf muscle weakness - a proof-of-concept study.

Authors:  Hilde E Ploeger; Niels F J Waterval; Frans Nollet; Sicco A Bus; Merel-Anne Brehm
Journal:  J Foot Ankle Res       Date:  2019-08-07       Impact factor: 2.303

4.  Assessment of the Shank-to-Vertical Angle While Changing Heel Heights Using a Single Inertial Measurement Unit in Individuals with Incomplete Spinal Cord Injury Wearing an Ankle-Foot-Orthosis.

Authors:  Lysanne A F de Jong; Yvette L Kerkum; Tom de Groot; Marije Vos-van der Hulst; Ilse J W van Nes; Noel L W Keijsers
Journal:  Sensors (Basel)       Date:  2021-02-02       Impact factor: 3.576

5.  A randomized crossover study of functional electrical stimulation during walking in spastic cerebral palsy: the FES on participation (FESPa) trial.

Authors:  Kenneth Meijer; R Jeroen Vermeulen; Irene Moll; Rik G J Marcellis; Marcel L P Coenen; Sabine M Fleuren; Paul J B Willems; Lucianne A W M Speth; M Adhiambo Witlox
Journal:  BMC Pediatr       Date:  2022-01-13       Impact factor: 2.125

  5 in total

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