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Gepubliceerd in: Journal of Foot and Ankle Research 1/2008

Open Access 01-09-2008 | Oral presentation

Evidence for early stance phase pre-loading of the plantar aponeurosis

Auteurs: Paolo Caravaggi, Todd C Pataky, Russ Savage, Robin H Crompton

Gepubliceerd in: Journal of Foot and Ankle Research | bijlage 1/2008

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Introduction

An inverse dynamics approach has been used to gain an insight into the mechanical behaviour of the plantar aponeurosis (PA) at different walking speeds. Mechanical [1] and finite element models [2] have evaluated its biomechanics in quasi static conditions. To our knowledge only one study has addressed the dynamic behaviour of the PA with relation to the Achilles tendon force [3]. The aims of this study were to create a multibody model to quantify PA tension and to examine how PA tension changes with walking speed.

Methods

Three healthy young subjects with no history of foot injuries or abnormalities participated in this study. A linear ultrasound probe was employed to identify the proximal attachment of the PA onto the plantar heel. An ad hoc 12 markers protocol, modification of [4], was designed to record the kinematics of heel, metatarsal bones and toes at different walking speeds.
Commercial software for multibody dynamics analysis (MSC.Adams) was used to build the model geometry and to calculate the elongation trajectories for five segments of the PA based on stance phase kinematics data (Figure 1). The metatarsal heads were modelled as cylinders under the metatarso-phalangeal joints. The windlass mechanism of the PA was modelled by contact elements that constrained the PA segments to wrap around the metatarsal heads. Bulk PA stiffness [5] was distributed equally among the five digits and was used to estimate segmental PA tension.

Results

Peak PA tension occurred in late stance phase (~1.5 BW) for all walking speeds and was similar in magnitude to cadaver simulation data [3]. Early stance phase PA tension increased systematically with walking speed (Figure 2).

Conclusion

Preliminary results demonstrate model validity and reveal an interesting relation between PA tension and walking speed. The increase in PA tension with walking speed during early stance may represent a pre-loading protective mechanism to further support the longitudinal arch at higher impact forces.
Open AccessThis article is published under license to BioMed Central Ltd. This is an Open Access article is distributed under the terms of the Creative Commons Attribution 2.0 International License (https://​creativecommons.​org/​licenses/​by/​2.​0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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Literatuur
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go back to reference George A: Arangio Clin Orth and Rel Res. 1997, 339: 227-231. 10.1097/00003086-199706000-00031.CrossRef George A: Arangio Clin Orth and Rel Res. 1997, 339: 227-231. 10.1097/00003086-199706000-00031.CrossRef
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go back to reference Erdemir Ahmet, et al: JBJS. 2004, 86: 546-552. Erdemir Ahmet, et al: JBJS. 2004, 86: 546-552.
4.
go back to reference Leardini , et al: Gait&Posture. 2007, 25: 453-462. Leardini , et al: Gait&Posture. 2007, 25: 453-462.
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Metagegevens
Titel
Evidence for early stance phase pre-loading of the plantar aponeurosis
Auteurs
Paolo Caravaggi
Todd C Pataky
Russ Savage
Robin H Crompton
Publicatiedatum
01-09-2008
Uitgeverij
BioMed Central
Gepubliceerd in
Journal of Foot and Ankle Research / Uitgave bijlage 1/2008
Elektronisch ISSN: 1757-1146
DOI
https://doi.org/10.1186/1757-1146-1-S1-O42

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