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Published in: Journal of Foot and Ankle Research 1/2020

Open Access 01-12-2020 | Computed Tomography | Research

Correlations between weight-bearing 3D bone architecture and dynamic plantar pressure measurements in the diabetic foot

Authors: Claudio Belvedere, Claudia Giacomozzi, Claudio Carrara, Giada Lullini, Paolo Caravaggi, Lisa Berti, Giulio Marchesini, Luca Baccolini, Stefano Durante, Alberto Leardini

Published in: Journal of Foot and Ankle Research | Issue 1/2020

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Abstract

Background

Measurements of plantar loading reveal foot-to-floor interaction during activity, but information on bone architecture cannot be derived. Recently, cone-beam computer tomography (CBCT) has given visual access to skeletal structures in weight-bearing. The combination of the two measures has the potential to improve clinical understanding and prevention of diabetic foot ulcers. This study explores the correlations between static 3D bone alignment and dynamic plantar loading.

Methods

Sixteen patients with diabetes were enrolled (group ALL): 15 type 1 with (N, 7) and without (D, 8) diabetic neuropathy, and 1 with latent autoimmune diabetes. CBCT foot scans were taken in single-leg upright posture. 3D bone models were obtained by image segmentation and aligned in a foot anatomical reference frame. Absolute inclination and relative orientation angles and heights of the bones were calculated. Pressure patterns were also acquired during barefoot level walking at self-selected speed, from which regional peak pressure and absolute and normalised pressure-time integral were worked out at hallux and at first, central and fifth metatarsals (LOAD variables) as averaged over five trials. Correlations with 3D alignments were searched also with arch index, contact time, age, BMI, years of disease and a neuropathy-related variable.

Results

Lateral and 3D angles showed the highest percentage of significant (p < 0.05) correlations with LOAD. These were weak-to-moderate in the ALL group, moderate-to-strong in N and D. LOAD under the central metatarsals showed moderate-to-strong correlation with plantarflexion of the 2nd and 3rd phalanxes in ALL and N. LOAD at the hallux increased with plantarflexion at the 3rd phalanx in ALL, at 1st phalanx in N and at 5th phalanx in D. Arch index correlated with 1st phalanx plantarflexion in ALL and D; contact time showed strong correlation with 2nd and 3rd metatarsals and with 4th phalanx dorsiflexion in D.

Conclusion

These preliminary original measures reveal that alteration of plantar dynamic loading patterns can be accounted for peculiar structural changes of foot bones. Load under the central metatarsal heads were correlated more with inclination of the corresponding phalanxes than metatarsals. Further analyses shall detect to which extent variables play a role in the many group-specific correlations.
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Metadata
Title
Correlations between weight-bearing 3D bone architecture and dynamic plantar pressure measurements in the diabetic foot
Authors
Claudio Belvedere
Claudia Giacomozzi
Claudio Carrara
Giada Lullini
Paolo Caravaggi
Lisa Berti
Giulio Marchesini
Luca Baccolini
Stefano Durante
Alberto Leardini
Publication date
01-12-2020
Publisher
BioMed Central
Published in
Journal of Foot and Ankle Research / Issue 1/2020
Electronic ISSN: 1757-1146
DOI
https://doi.org/10.1186/s13047-020-00431-x

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