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Published in: Journal of Foot and Ankle Research 1/2014

Open Access 01-12-2014 | Research

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

Authors: Christopher J Nester, Hannah L Jarvis, Richard K Jones, Peter D Bowden, Anmin Liu

Published in: Journal of Foot and Ankle Research | Issue 1/2014

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Abstract

Background

Understanding 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.

Methods

Kinematics 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.

Results

Foot 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.

Conclusions

The 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.
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Literature
1.
go back to reference Elftman H: The transverse tarsal joint and its control. Clin Orthop. 1960, 16: 41-46.PubMed Elftman H: The transverse tarsal joint and its control. Clin Orthop. 1960, 16: 41-46.PubMed
2.
go back to reference Root ML, Orien WP, Weed JH, Hughes RJ: Biomechanical Examination of the Foot. 1971, Clinical Biomechanics Corp, Los Angeles Root ML, Orien WP, Weed JH, Hughes RJ: Biomechanical Examination of the Foot. 1971, Clinical Biomechanics Corp, Los Angeles
3.
go back to reference Root ML, Orien WP, Weed JH, Hughes RJ: Normal and Abnormal Function of the Foot. 1977, Clinical Biomechanics Corp, Los Angeles Root ML, Orien WP, Weed JH, Hughes RJ: Normal and Abnormal Function of the Foot. 1977, Clinical Biomechanics Corp, Los Angeles
4.
go back to reference Dananberg HJ: Sagittal plane biomechanics. J Am Podiat Med Assn. 2000, 90 (1): 47-50. 10.7547/87507315-90-1-47.CrossRef Dananberg HJ: Sagittal plane biomechanics. J Am Podiat Med Assn. 2000, 90 (1): 47-50. 10.7547/87507315-90-1-47.CrossRef
6.
go back to reference Albert SF, Curran SA: Introduction to Theory. Chapter 4. In Biomechanics of the Lower Extremity: Theory and Practice. Volume 1. 1st edition. Edited by Albert SF, Curran SA. Denver: 2013:111–146. Bipedmed. Albert SF, Curran SA: Introduction to Theory. Chapter 4. In Biomechanics of the Lower Extremity: Theory and Practice. Volume 1. 1st edition. Edited by Albert SF, Curran SA. Denver: 2013:111–146. Bipedmed.
7.
go back to reference Philips RRD: Root Theory: Its Origins and Contemporary Views. Chapter 5. In Biomechanics of the Lower Extremity: Theory and Practice. Volume 1. 1st edition. Denver: 2013:147–204. Bipedmed. Philips RRD: Root Theory: Its Origins and Contemporary Views. Chapter 5. In Biomechanics of the Lower Extremity: Theory and Practice. Volume 1. 1st edition. Denver: 2013:147–204. Bipedmed.
8.
go back to reference Lundgren P, Nester C, Liu A, Arndt A, Jones R, Stacoff A, Wolf P, Lundberg A: Invasive in vivo measurement of rear-, mid- and forefoot motion during walking. Gait Posture. 2008, 28 (1): 93-100. 10.1016/j.gaitpost.2007.10.009.CrossRefPubMed Lundgren P, Nester C, Liu A, Arndt A, Jones R, Stacoff A, Wolf P, Lundberg A: Invasive in vivo measurement of rear-, mid- and forefoot motion during walking. Gait Posture. 2008, 28 (1): 93-100. 10.1016/j.gaitpost.2007.10.009.CrossRefPubMed
9.
go back to reference Shultz R, Kedgley AE, Jenkyn TR: Quantifying skin motion artifact error of the hindfoot and forefoot marker clusters with the optical tracking of a multi-segment foot model using single-plane fluoroscopy. Gait Posture. 2011, 34 (1): 44-48. 10.1016/j.gaitpost.2011.03.008.CrossRefPubMed Shultz R, Kedgley AE, Jenkyn TR: Quantifying skin motion artifact error of the hindfoot and forefoot marker clusters with the optical tracking of a multi-segment foot model using single-plane fluoroscopy. Gait Posture. 2011, 34 (1): 44-48. 10.1016/j.gaitpost.2011.03.008.CrossRefPubMed
10.
go back to reference Marquez-Barrientos C, Liu XC, Lyon R, Tassone C, Thometz J, Tarima S: Correlation between anatomic foot and ankle movement measured with MRI and with a motion analysis system. Gait Posture. 2012, 36 (3): 389-393. 10.1016/j.gaitpost.2012.03.023.CrossRefPubMed Marquez-Barrientos C, Liu XC, Lyon R, Tassone C, Thometz J, Tarima S: Correlation between anatomic foot and ankle movement measured with MRI and with a motion analysis system. Gait Posture. 2012, 36 (3): 389-393. 10.1016/j.gaitpost.2012.03.023.CrossRefPubMed
11.
go back to reference Cornwall MW, McPoil TG: Motion of the calcaneus, navicular, and first metatarsal during the stance phase of walking. J Am Podiat Med Assn. 2002, 92 (2): 67-76. 10.7547/87507315-92-2-67.CrossRef Cornwall MW, McPoil TG: Motion of the calcaneus, navicular, and first metatarsal during the stance phase of walking. J Am Podiat Med Assn. 2002, 92 (2): 67-76. 10.7547/87507315-92-2-67.CrossRef
12.
go back to reference Deschamps K, Staes F, Roosen P, Nobels F, Desloovere K, Bruyninckx H, Matricali A: Body of evidence supporting the clinical use of 3D multi segment foot models: a systematic review. Gait Posture. 2011, 33 (3): 338-349. 10.1016/j.gaitpost.2010.12.018.CrossRefPubMed Deschamps K, Staes F, Roosen P, Nobels F, Desloovere K, Bruyninckx H, Matricali A: Body of evidence supporting the clinical use of 3D multi segment foot models: a systematic review. Gait Posture. 2011, 33 (3): 338-349. 10.1016/j.gaitpost.2010.12.018.CrossRefPubMed
13.
go back to reference Bishop C, Paul G, Thewlis D: Recommendations for the reporting of foot and ankle models. J Biomech. 2012, 45 (13): 2185-2194. 10.1016/j.jbiomech.2012.06.019.CrossRefPubMed Bishop C, Paul G, Thewlis D: Recommendations for the reporting of foot and ankle models. J Biomech. 2012, 45 (13): 2185-2194. 10.1016/j.jbiomech.2012.06.019.CrossRefPubMed
14.
go back to reference Jenkyn TR, Shultz R, Giffin JR, Birmingham TB: A comparison of subtalar joint motion during anticipated medial cutting turns and level walking using a multi-segment foot model. Gait Posture. 2010, 31 (2): 153-158. 10.1016/j.gaitpost.2009.09.016.CrossRefPubMed Jenkyn TR, Shultz R, Giffin JR, Birmingham TB: A comparison of subtalar joint motion during anticipated medial cutting turns and level walking using a multi-segment foot model. Gait Posture. 2010, 31 (2): 153-158. 10.1016/j.gaitpost.2009.09.016.CrossRefPubMed
15.
go back to reference Hunt AE, Smith RM, Torode M, Keenan AM: Inter-segment foot motion and ground reaction forces over the stance phase of walking. Clin Biomech. 2001, 16 (7): 592-600. 10.1016/S0268-0033(01)00040-7.CrossRef Hunt AE, Smith RM, Torode M, Keenan AM: Inter-segment foot motion and ground reaction forces over the stance phase of walking. Clin Biomech. 2001, 16 (7): 592-600. 10.1016/S0268-0033(01)00040-7.CrossRef
16.
go back to reference Nester CJ, Liu AM, Ward E, Howard D, Cocheba J, Derrick T, Patterson P: In vitro study of foot kinematics using a dynamic walking cadaver model. J Biomech. 2007, 40 (9): 1927-1937. 10.1016/j.jbiomech.2006.09.008.CrossRefPubMed Nester CJ, Liu AM, Ward E, Howard D, Cocheba J, Derrick T, Patterson P: In vitro study of foot kinematics using a dynamic walking cadaver model. J Biomech. 2007, 40 (9): 1927-1937. 10.1016/j.jbiomech.2006.09.008.CrossRefPubMed
17.
go back to reference Jenkyn TR, Nicol AC: A multi-segment kinematic model of the foot with a novel definition of forefoot motion for use in clinical gait analysis during walking. J Biomech. 2007, 40 (14): 3271-3278. 10.1016/j.jbiomech.2007.04.008.CrossRefPubMed Jenkyn TR, Nicol AC: A multi-segment kinematic model of the foot with a novel definition of forefoot motion for use in clinical gait analysis during walking. J Biomech. 2007, 40 (14): 3271-3278. 10.1016/j.jbiomech.2007.04.008.CrossRefPubMed
18.
go back to reference Simon J, Doederlein L, McIntosh AS, Metaxiotis D, Bock HG, Wolf SI: The Heidelberg foot measurement method: development, description and assessment. Gait Posture. 2006, 23 (4): 411-424. 10.1016/j.gaitpost.2005.07.003.CrossRefPubMed Simon J, Doederlein L, McIntosh AS, Metaxiotis D, Bock HG, Wolf SI: The Heidelberg foot measurement method: development, description and assessment. Gait Posture. 2006, 23 (4): 411-424. 10.1016/j.gaitpost.2005.07.003.CrossRefPubMed
19.
go back to reference De Mits S, Segers V, Woodburn J, Elewaut D, De Clercq D, Roosen P: A clinically applicable six-segmented foot model. J Orthop Res. 2012, 30 (4): 655-661. 10.1002/jor.21570.CrossRefPubMed De Mits S, Segers V, Woodburn J, Elewaut D, De Clercq D, Roosen P: A clinically applicable six-segmented foot model. J Orthop Res. 2012, 30 (4): 655-661. 10.1002/jor.21570.CrossRefPubMed
20.
go back to reference Hunt AE, Smith RM, Torode M: Extrinsic muscle activity, foot motion and ankle joint moments during the stance phase of walking. Foot Ankle Int. 2001, 22 (1): 31-41.PubMed Hunt AE, Smith RM, Torode M: Extrinsic muscle activity, foot motion and ankle joint moments during the stance phase of walking. Foot Ankle Int. 2001, 22 (1): 31-41.PubMed
21.
go back to reference Caravaggi P, Pataky T, Goulermas JY, Savage R, Crompton R: A dynamic model of the windlass mechanism of the foot: evidence for early stance phase preloading of the plantar aponeurosis. J Exp Biol. 2009, 212 (Pt 15): 2491-2499. 10.1242/jeb.025767.CrossRefPubMed Caravaggi P, Pataky T, Goulermas JY, Savage R, Crompton R: A dynamic model of the windlass mechanism of the foot: evidence for early stance phase preloading of the plantar aponeurosis. J Exp Biol. 2009, 212 (Pt 15): 2491-2499. 10.1242/jeb.025767.CrossRefPubMed
22.
go back to reference Stanhope SJ, Kepple TM, McGuire DA, Roman NL: Kinematic-based technique for event time determination during gait. Med Biol Eng Comput. 1990, 28 (94): 355-360. 10.1007/BF02446154.CrossRefPubMed Stanhope SJ, Kepple TM, McGuire DA, Roman NL: Kinematic-based technique for event time determination during gait. Med Biol Eng Comput. 1990, 28 (94): 355-360. 10.1007/BF02446154.CrossRefPubMed
23.
go back to reference Richards J: Biomechanics in Clinic and Research: An Interactive Teaching and Learning Course. 2008, Churchill Livingstone, Elsevier, London, 1 Richards J: Biomechanics in Clinic and Research: An Interactive Teaching and Learning Course. 2008, Churchill Livingstone, Elsevier, London, 1
24.
go back to reference Perry J: Gait Analysis: Normal and Pathological Function. 1992, Slack, Thorofare, New Jersey, 1 Perry J: Gait Analysis: Normal and Pathological Function. 1992, Slack, Thorofare, New Jersey, 1
25.
go back to reference Legault-Moore D, Chester VL, de Vries G: Multisegment foot kinematics during walking in younger and older adults. J Clin Med Res. 2012, 4 (4): 259-266.PubMedPubMedCentral Legault-Moore D, Chester VL, de Vries G: Multisegment foot kinematics during walking in younger and older adults. J Clin Med Res. 2012, 4 (4): 259-266.PubMedPubMedCentral
26.
go back to reference Hyslop E, Woodburn J, McInnes IB, Semple R, Newcombe L, Hendry G, Rafferty D, De Mits S, Turner DE: A reliability study of biomechanical foot function in psoriatic arthritis based on a novel multi-segmented foot model. Gait Posture. 2010, 32 (4): 619-626. 10.1016/j.gaitpost.2010.09.004.CrossRefPubMed Hyslop E, Woodburn J, McInnes IB, Semple R, Newcombe L, Hendry G, Rafferty D, De Mits S, Turner DE: A reliability study of biomechanical foot function in psoriatic arthritis based on a novel multi-segmented foot model. Gait Posture. 2010, 32 (4): 619-626. 10.1016/j.gaitpost.2010.09.004.CrossRefPubMed
27.
go back to reference Bruening DA, Cooney KM, Buczek FL: Analysis of a kinetic multi-segment foot model. Part I: Model repeatability and kinematic validity. Gait Posture. 2012, 35 (4): 529-534. 10.1016/j.gaitpost.2011.10.363.CrossRefPubMed Bruening DA, Cooney KM, Buczek FL: Analysis of a kinetic multi-segment foot model. Part I: Model repeatability and kinematic validity. Gait Posture. 2012, 35 (4): 529-534. 10.1016/j.gaitpost.2011.10.363.CrossRefPubMed
28.
go back to reference Okita N, Meyers SA, Challis JH, Sharkey NA: Midtarsal joint locking: new perspectives on an old paradigm. J Orthop Res. 2014, 32 (1): 110-115. 10.1002/jor.22477.CrossRefPubMed Okita N, Meyers SA, Challis JH, Sharkey NA: Midtarsal joint locking: new perspectives on an old paradigm. J Orthop Res. 2014, 32 (1): 110-115. 10.1002/jor.22477.CrossRefPubMed
29.
go back to reference Eslami M, Begon M, Farahpour N, Allard P: Forefoot-rearfoot coupling patterns and tibial internal rotation during stance phase of barefoot versus shod running. Clin Biomech. 2007, 22 (1): 74-80. 10.1016/j.clinbiomech.2006.08.002.CrossRef Eslami M, Begon M, Farahpour N, Allard P: Forefoot-rearfoot coupling patterns and tibial internal rotation during stance phase of barefoot versus shod running. Clin Biomech. 2007, 22 (1): 74-80. 10.1016/j.clinbiomech.2006.08.002.CrossRef
30.
go back to reference Pohl MB, Messenger N, Buckley JG: Forefoot, rearfoot and shank coupling: effect of variations in speed and mode of gait. Gait Posture. 2007, 25 (2): 295-302. 10.1016/j.gaitpost.2006.04.012.CrossRefPubMed Pohl MB, Messenger N, Buckley JG: Forefoot, rearfoot and shank coupling: effect of variations in speed and mode of gait. Gait Posture. 2007, 25 (2): 295-302. 10.1016/j.gaitpost.2006.04.012.CrossRefPubMed
31.
go back to reference Wilken J, Rao S, Saltzman C, Yack HJ: The effect of arch height on kinematic coupling during walking. Clin Biomech. 2011, 26 (3): 318-323. 10.1016/j.clinbiomech.2010.10.005.CrossRef Wilken J, Rao S, Saltzman C, Yack HJ: The effect of arch height on kinematic coupling during walking. Clin Biomech. 2011, 26 (3): 318-323. 10.1016/j.clinbiomech.2010.10.005.CrossRef
32.
go back to reference Buldt AK, Murley GS, Butterworth P, Levinger P, Menz HB, Landorf KB: The relationship between foot posture and lower limb kinematics during walking: A systematic review. Gait Posture. 2013, 38 (3): 363-372. 10.1016/j.gaitpost.2013.01.010.CrossRefPubMed Buldt AK, Murley GS, Butterworth P, Levinger P, Menz HB, Landorf KB: The relationship between foot posture and lower limb kinematics during walking: A systematic review. Gait Posture. 2013, 38 (3): 363-372. 10.1016/j.gaitpost.2013.01.010.CrossRefPubMed
33.
go back to reference Hillstrom HJ, Song J, Kraszewski AP, Hafer JF, Mootanah R, Dufour AB, Chow BS, Deland JT: Foot type biomechanics part 1: structure and function of the asymptomatic foot. Gait Posture. 2013, 37 (3): 445-451. 10.1016/j.gaitpost.2012.09.007.CrossRefPubMed Hillstrom HJ, Song J, Kraszewski AP, Hafer JF, Mootanah R, Dufour AB, Chow BS, Deland JT: Foot type biomechanics part 1: structure and function of the asymptomatic foot. Gait Posture. 2013, 37 (3): 445-451. 10.1016/j.gaitpost.2012.09.007.CrossRefPubMed
34.
go back to reference Angin S, Crofts G, Mickle KJ, Nester CJ: Ultrasound evaluation of foot muscles and plantar fascia in pes planus. Gait Posture. 2014, 40 (1): 48-52. 10.1016/j.gaitpost.2014.02.008.CrossRefPubMed Angin S, Crofts G, Mickle KJ, Nester CJ: Ultrasound evaluation of foot muscles and plantar fascia in pes planus. Gait Posture. 2014, 40 (1): 48-52. 10.1016/j.gaitpost.2014.02.008.CrossRefPubMed
35.
go back to reference Murphy DF, Beynnon BD, Michelson JD, Vacek PM: Efficacy of plantar loading parameters during gait in terms of reliability, variability, effect of gender and relationship between contact area and plantar pressure. Foot Ankle Int. 2005, 26 (2): 171-179.PubMed Murphy DF, Beynnon BD, Michelson JD, Vacek PM: Efficacy of plantar loading parameters during gait in terms of reliability, variability, effect of gender and relationship between contact area and plantar pressure. Foot Ankle Int. 2005, 26 (2): 171-179.PubMed
36.
go back to reference Putti AB, Arnold GP, Abboud RJ: Foot pressure differences in men and women. J Foot Ankle Surg. 2010, 16 (1): 21-24. 10.1016/j.fas.2009.03.005.CrossRef Putti AB, Arnold GP, Abboud RJ: Foot pressure differences in men and women. J Foot Ankle Surg. 2010, 16 (1): 21-24. 10.1016/j.fas.2009.03.005.CrossRef
37.
go back to reference Nester CJ, Liu AM, Ward E, Howard D, Cocheba J, Derrick T: Error in the description of foot kinematics due to violation of rigid body assumptions. J Biomech. 2010, 43 (4): 666-672. 10.1016/j.jbiomech.2009.10.027.CrossRefPubMed Nester CJ, Liu AM, Ward E, Howard D, Cocheba J, Derrick T: Error in the description of foot kinematics due to violation of rigid body assumptions. J Biomech. 2010, 43 (4): 666-672. 10.1016/j.jbiomech.2009.10.027.CrossRefPubMed
38.
go back to reference Arnold JB, Mackintosh S, Jones S, Thewlis D: Repeatability of stance phase kinematics from a multi-segment foot model in people aged 50 years and older. Gait Posture Gait Posture. 2013, 38 (2): 349-351. 10.1016/j.gaitpost.2012.11.010.CrossRefPubMed Arnold JB, Mackintosh S, Jones S, Thewlis D: Repeatability of stance phase kinematics from a multi-segment foot model in people aged 50 years and older. Gait Posture Gait Posture. 2013, 38 (2): 349-351. 10.1016/j.gaitpost.2012.11.010.CrossRefPubMed
39.
go back to reference Saraswat P, MacWilliams BA, Davis RB: A multi-segment foot model based on anatomically registered technical coordinate systems: method repeatability in pediatric feet. Gait Posture. 2012, 35 (4): 547-555. 10.1016/j.gaitpost.2011.11.022.CrossRefPubMed Saraswat P, MacWilliams BA, Davis RB: A multi-segment foot model based on anatomically registered technical coordinate systems: method repeatability in pediatric feet. Gait Posture. 2012, 35 (4): 547-555. 10.1016/j.gaitpost.2011.11.022.CrossRefPubMed
40.
go back to reference Bishop C, Paul G, Thewlis D: The reliability, accuracy and minimal detecTable difference of a multi-segment kinematic model of the foot-shoe complex. Gait Posture. 2013, 37 (4): 552-557. 10.1016/j.gaitpost.2012.09.020.CrossRefPubMed Bishop C, Paul G, Thewlis D: The reliability, accuracy and minimal detecTable difference of a multi-segment kinematic model of the foot-shoe complex. Gait Posture. 2013, 37 (4): 552-557. 10.1016/j.gaitpost.2012.09.020.CrossRefPubMed
Metadata
Title
Movement of the human foot in 100 pain free individuals aged 18–45: implications for understanding normal foot function
Authors
Christopher J Nester
Hannah L Jarvis
Richard K Jones
Peter D Bowden
Anmin Liu
Publication date
01-12-2014
Publisher
BioMed Central
Published in
Journal of Foot and Ankle Research / Issue 1/2014
Electronic ISSN: 1757-1146
DOI
https://doi.org/10.1186/s13047-014-0051-8

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