Home > Research > Publications & Outputs > Movement of the human foot in 100 pain free ind...

Electronic data

  • Nester_100feet

    Final published version, 0.98 MB, PDF document

    Available under license: CC BY: Creative Commons Attribution 4.0 International License

Links

Text available via DOI:

View graph of relations

Movement of the human foot in 100 pain free individuals aged 18-45: implications for understanding normal foot function

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Published

Standard

Movement of the human foot in 100 pain free individuals aged 18-45: implications for understanding normal foot function. / Nester, Christopher J; Jarvis, Hannah L; Jones, Richard K et al.
In: Journal of foot and ankle research, 31.12.2014.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

APA

Vancouver

Nester CJ, Jarvis HL, Jones RK, Bowden PD, Liu A. Movement of the human foot in 100 pain free individuals aged 18-45: implications for understanding normal foot function. Journal of foot and ankle research. 2014 Dec 31;51. Epub 2014 Nov 28. doi: 10.1186/s13047-014-0051-8

Author

Nester, Christopher J ; Jarvis, Hannah L ; Jones, Richard K et al. / Movement of the human foot in 100 pain free individuals aged 18-45 : implications for understanding normal foot function. In: Journal of foot and ankle research. 2014.

Bibtex

@article{d830abb5184c4292b805e324e225f3c2,
title = "Movement of the human foot in 100 pain free individuals aged 18-45: implications for understanding normal foot function",
abstract = "BackgroundUnderstanding motion in the normal healthy foot is a prerequisite for understanding the effects of pathology and thereafter setting targets for interventions. Quality foot kinematic data from healthy feet will also assist the development of high quality and research based clinical models of foot biomechanics. To address gaps in the current literature we aimed to describe 3D foot kinematics using a 5 segment foot model in a population of 100 pain free individuals.MethodsKinematics of the leg, calcaneus, midfoot, medial and lateral forefoot and hallux were measured in 100 self reported healthy and pain free individuals during walking. Descriptive statistics were used to characterise foot movements. Contributions from different foot segments to the total motion in each plane were also derived to explore functional roles of different parts of the foot.ResultsFoot segments demonstrated greatest motion in the sagittal plane, but large ranges of movement in all planes. All foot segments demonstrated movement throughout gait, though least motion was observed between the midfoot and calcaneus. There was inconsistent evidence of movement coupling between joints. There were clear differences in motion data compared to foot segment models reported in the literature.ConclusionsThe data reveal the foot is a multiarticular structure, movements are complex, show incomplete evidence of coupling, and vary person to person. The data provide a useful reference data set against which future experimental data can be compared and may provide the basis for conceptual models of foot function based on data rather than anecdotal observations.",
author = "Nester, {Christopher J} and Jarvis, {Hannah L} and Jones, {Richard K} and Bowden, {Peter D} and Anmin Liu",
year = "2014",
month = dec,
day = "31",
doi = "10.1186/s13047-014-0051-8",
language = "English",
journal = "Journal of foot and ankle research",

}

RIS

TY - JOUR

T1 - Movement of the human foot in 100 pain free individuals aged 18-45

T2 - implications for understanding normal foot function

AU - Nester, Christopher J

AU - Jarvis, Hannah L

AU - Jones, Richard K

AU - Bowden, Peter D

AU - Liu, Anmin

PY - 2014/12/31

Y1 - 2014/12/31

N2 - BackgroundUnderstanding motion in the normal healthy foot is a prerequisite for understanding the effects of pathology and thereafter setting targets for interventions. Quality foot kinematic data from healthy feet will also assist the development of high quality and research based clinical models of foot biomechanics. To address gaps in the current literature we aimed to describe 3D foot kinematics using a 5 segment foot model in a population of 100 pain free individuals.MethodsKinematics of the leg, calcaneus, midfoot, medial and lateral forefoot and hallux were measured in 100 self reported healthy and pain free individuals during walking. Descriptive statistics were used to characterise foot movements. Contributions from different foot segments to the total motion in each plane were also derived to explore functional roles of different parts of the foot.ResultsFoot segments demonstrated greatest motion in the sagittal plane, but large ranges of movement in all planes. All foot segments demonstrated movement throughout gait, though least motion was observed between the midfoot and calcaneus. There was inconsistent evidence of movement coupling between joints. There were clear differences in motion data compared to foot segment models reported in the literature.ConclusionsThe data reveal the foot is a multiarticular structure, movements are complex, show incomplete evidence of coupling, and vary person to person. The data provide a useful reference data set against which future experimental data can be compared and may provide the basis for conceptual models of foot function based on data rather than anecdotal observations.

AB - BackgroundUnderstanding motion in the normal healthy foot is a prerequisite for understanding the effects of pathology and thereafter setting targets for interventions. Quality foot kinematic data from healthy feet will also assist the development of high quality and research based clinical models of foot biomechanics. To address gaps in the current literature we aimed to describe 3D foot kinematics using a 5 segment foot model in a population of 100 pain free individuals.MethodsKinematics of the leg, calcaneus, midfoot, medial and lateral forefoot and hallux were measured in 100 self reported healthy and pain free individuals during walking. Descriptive statistics were used to characterise foot movements. Contributions from different foot segments to the total motion in each plane were also derived to explore functional roles of different parts of the foot.ResultsFoot segments demonstrated greatest motion in the sagittal plane, but large ranges of movement in all planes. All foot segments demonstrated movement throughout gait, though least motion was observed between the midfoot and calcaneus. There was inconsistent evidence of movement coupling between joints. There were clear differences in motion data compared to foot segment models reported in the literature.ConclusionsThe data reveal the foot is a multiarticular structure, movements are complex, show incomplete evidence of coupling, and vary person to person. The data provide a useful reference data set against which future experimental data can be compared and may provide the basis for conceptual models of foot function based on data rather than anecdotal observations.

UR - http://europepmc.org/abstract/med/25493100

U2 - 10.1186/s13047-014-0051-8

DO - 10.1186/s13047-014-0051-8

M3 - Journal article

C2 - 25493100

JO - Journal of foot and ankle research

JF - Journal of foot and ankle research

M1 - 51

ER -