Centre of pressure characteristics in normal, planus and cavus feet

Author:

Buldt Andrew K.12,Forghany Saeed34,Landorf Karl B.12,Murley George S.1,Levinger Pazit5,Menz Hylton B.12

Affiliation:

1. Discipline of Podiatry School of Allied Health La Trobe University 3086 Melbourne Victoria Australia

2. La Trobe Sport and Exercise Medicine Research Centre School of Allied Health La Trobe University 3086 Melbourne Victoria Australia

3. Musculoskeletal Research Center Isfahan University of Medical Sciences Isfahan Iran

4. Health Sciences Research Centre University of Salford Greater Manchester UK

5. Institute of Sport, Exercise & Active Living (ISEAL) College of Sport and Exercise Science Victoria University Melbourne Australia

Abstract

AbstractBackgroundThe aim of this study was to compare centre of pressure (COP) characteristics between healthy adults with normal, planus or cavus feet who were allocated to groups based on reliable foot posture measurement techniques.MethodsNinety‐two healthy adult participants (aged 18 to 45) were recruited and classified as either normal (n = 35), pes planus (n = 31) or pes cavus (n = 26) based on Foot Posture Index, Arch Index and normalised navicular height truncated measurements. Barefoot walking trials were conducted using an emed®‐x 400 plantar pressure system (Novel GmbH, Munich, Germany). Average, maximum, minimum and range (difference between maximum and minimum) values were calculated for COP velocity and lateral‐medial force index during loading response, midstance, terminal stance and pre‐swing phases of stance. The COP excursion index was also calculated. One‐way analyses of variance were used to compare the three foot posture groups.ResultsThe cavus foot exhibited the slowest average and minimum COP velocity during terminal stance, but this pattern was reversed during pre‐swing, when the cavus foot exhibited the fastest maximum COP velocity. The planus foot exhibited the smallest lateral medial force index range during terminal stance. There were no differences between the groups for COP excursion index.ConclusionThese findings indicate that there are differences in COP characteristics between foot postures, which may represent different mechanisms for generating force to facilitate forward progression of the body during the propulsive phases of gait.

Publisher

Wiley

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