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Kinetic analysis of gait in adults with asymptomatic flatfoot

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01 abr 2022

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Barnes A., Wheat J., Milner C., Association between foot type and tibial stress injuries: a systematic review, Br. J. Sports. Med., 2008, 42 (2), 93–98. Search in Google Scholar

Buldt A.K., Forghany S., Landorf K.B., Levinger P., Murley G.S. et al., Foot posture is associated with plantar pressure during gait: A comparison of normal, planus and cavus feet, Gait Posture, 2018, 62, 235–240. Search in Google Scholar

Buldt A.K., Levinger P., Murley G.S., Menz H.B., Nester C.J. et al., Foot posture is associated with kinematics of the foot during gait: A comparison of normal, planus and cavus feet, Gait Posture, 2015, 42, 42–48. Search in Google Scholar

Carvalhais V.O., De Araújo V.L., Souza T.R., Gonçalves G.G., Ocarino Jde M. et al., Validity and reliability of clinical tests for assessing hip passive stiffness, Man. Ther., 2011, 16 (3), 240–245. Search in Google Scholar

Chimenti R.L., Tome J., Hillin C.D., Flemister A.S., Houck J., Adult-Acquired Flatfoot Deformity and Age-Related Differences in Foot and Ankle Kinematics During the Single--Limb Heel-Rise Test, J. Orthop. Sports. Phys. Ther., 2014, 44, 283–290. Search in Google Scholar

Cho S.H., Park J.M., Kwon O.Y., Gender differences in three dimensional gait analysis data from 98 healthy Korean adults, Clin. Biomech, (Bristol, Avon), 2004, 19, 145–152. Search in Google Scholar

Dadura E., Truszczyńska-Baszak A., Drzał-Grabiec J., Krawczyk K., Rachwał M. et al., Analysis of foot structure in young recreational female ballet dancers, Biomedical Human Kinetics, 2020, 12, 75–81. Search in Google Scholar

Dicharry J., Kinematics and kinetics of gait: from lab to clinic, Clin. Sports. Med., 2010, 29 (3), 347–364. Search in Google Scholar

Doty J.F., Coughlin M.J., Hallux valgus and hypermobility of the first ray: facts and fiction, Int. Orthop., 2013, 37, 1655–1660. Search in Google Scholar

Dowling G.J., Murley G.S., Munteanu S.E., Smith M.M., Neal B.S. et al., Dynamic foot function as a risk factor for lower limb overuse injury: a systematic review, J. Foot Ankle Res., 2014, 7, DOI: 10.1186/s13047-014-0053-6. Search in Google Scholar

Hertel J., Dorfman J.H., Braham R.A., Lower extremity malalignments and anterior cruciate ligament injury history, J. Sports Sci. Med., 2004, 3 (4), 220–225. Search in Google Scholar

Hillstrom H.J., Song J., Kraszewski A.P., Hafer J.F., Mootanah R. et al., Foot type biomechanics, Part 1. Structure and function of the asymptomatic foot, Gait Posture, 2013, 37 (3), 445–451. Search in Google Scholar

Hunt A.E., Smith R.M., Mechanics and control of the flat versus normal foot during the stance phase of walking, Clin. Biomech., (Bristol, Avon), 2004, 19, 391–397. Search in Google Scholar

Kedroff L., Holmes M.N., Amis A., Newham D.J., Effect of patellofemoral pain on foot posture and walking kinematics, Gait Posture, 2019, 70, 361–369. Search in Google Scholar

Kuo A.D., Donelan J.M., Ruina A., Energetic consequences of walking like an inverted pendulum: step-to-step transitions, Exerc. Sport Sci. Rev., 2005, 33 (2), 88–97. Search in Google Scholar

Lee D.Y., Seo S.G., Kim E.J., Kim S.J., Lee K.M. et al., Inter-segmental motions of the foot in healthy adults: Gender difference, J. Orthop. Sci., 2016, 21 (6), 804–809. Search in Google Scholar

Lee J., Park G.H., Lee Y.S., Kim M.K., A comparison of muscle activities in the lower extremity between flat and normal feet during one-leg standing, J. Phys. Ther. Sci., 2013, 25, 1059–1061. Search in Google Scholar

Kirmizi M., Sengul Y.S., Angin S., The effects of gait speed on plantar pressure variables in individuals with normal foot posture and flatfoot, Acta Bioeng. Biomech., 2020, 22 (3), 161–168. Search in Google Scholar

Levinger P., Murley G.S., Barton C.J., Cotchett M.P., McSweeney S.R. et al., A comparison of foot kinematics in people with normal and flat arched feet using the Oxford Foot Model, Gait Posture, 2010, 32, 519–523. Search in Google Scholar

Magee D.J., Zachazewski J.E., Quillen W.S., Scientific Foundations and Principles of Practice in Musculoskeletal Rehabilitation, Saunders Elsevier, 2007. Search in Google Scholar

Maslen B., Ackland T., Radiographic study of skin displacement errors in the foot and ankle during standing, Clin. Biomech., 1994, 9, 291–296. Search in Google Scholar

Michelson J.D., Durant D.M., McFarland E., The injury risk associated with pes planus in athletes, Foot Ankle Int., 2002, 23 (7), 629–633. Search in Google Scholar

Murley G.S., Landorf K.B., Menz H.B., Bird A.R., Effect of foot posture, foot orthoses and footwear on lower limb muscle activity during walking and running: a systematic review, Gait Posture, 2009, 29 (2), 172–187. Search in Google Scholar

Murley G.S., Menz H.B., Landorf K.B., A protocol for classifying normal- and flat-arched foot posture for research studies using clinical and radiographic measurements, J. Foot Ankle Res., 2009, 2, DOI: 10.1186/1757-1146-2-22. Search in Google Scholar

Myoung-Kwon K., Foot pressure analysis of adults with flat and normal feet at different gait speeds on an ascending slope, J. Phys. Ther. Sci., 2015, 27 (12), 3767–3769. Search in Google Scholar

Nagano H., Tatsumi I., Sarashina E., Sparrow W.A., Begg R.K., Modelling knee flexion effects on joint power absorption and adduction moment, Knee, 2015, 22 (6), 490–493. Search in Google Scholar

Ness M.E., Long J., Marks R., Harris G., Foot and ankle kinematics in patients with posterior tibial tendon dysfunction, Gait Posture, 2008, 27 (2), 331–339. Search in Google Scholar

Nguyen A.D., Schultz S.J., Identifying Relationships Among Lower Extremity Alignment Characteristics, J. Athl. Train., 2009, 44 (5), 511–518. Search in Google Scholar

Nguyen A.D., Shultz S.J., Sex differences in clinical measures of lower extremity alignment, J. Orthop. Sports. Phys. Ther., 2007, 37 (7), 389–398. Search in Google Scholar

Okita N., Midtarsal joint locking: new perspectives on an old paradigm, J. Orthop. Res., 2014, 32, 110–115. Search in Google Scholar

Pita-Fernández S., González-Martín C., Seoane-Pillado T., López-Calviño B., Pértega-Díaz S., Gil-Guillén V., Validity of Footprint Analysis to Determine Flatfoot Using Clinical Diagnosis as the Gold Standard in a Random Sample Aged 40 Years and Older, J. Epidemiol., 2015, 25 (2), 148–154. Search in Google Scholar

Powers C.M., Chen P.Y., Reischl S.F., Perry J., Comparison of foot pronation and lower extremity rotation in persons with and without patellofemoral pain, Foot Ankle Int., 2002, 23 (7), 634–640. Search in Google Scholar

Prachgosin T., Chong D.Y., Leelasamran W., Smithmaitrie P., Chatpun S., Medial longitudinal arch biomechanics evaluation during gait in subjects with flexible flatfoot, Acta Bioeng. Biomech., 2015, 17 (4), 121–130. Search in Google Scholar

Rao S., Song J., Kraszewski A., Backus S., Ellis S.J. et al., The effect of foot structure on 1st metatarsophalangeal joint flexibility and hallucal loading, Gait Posture, 2011, 34 (1), 131–137. Search in Google Scholar

Reischl S.F., Powers C.M., Rao S., Perry J., Relationship between foot pronation and rotation of the tibia and femur during walking, Foot Ankle Int., 1999, 20 (8), 513–520. Search in Google Scholar

Sobhani S., Zwerver J., Van den Heuvel E., Postema K., Dekker R., Hijmans J.M., Rocker shoes reduce Achilles tendon load in running and walking in patients with chronic Achilles tendinopathy, J. Sci. Med. Sport., 2015, 18 (2), 133–138. Search in Google Scholar

Souza T.R., Mancini M.C., Araújo V.L., Carvalhais V.O., Ocarino J.M. et al., Clinical measures of hip and foot-ankle mechanics as predictors of rearfoot motion and posture, Man. Ther., 2014, 19 (5), 379–385. Search in Google Scholar

Toullec E., Adult flatfoot, Orthop. Traumatol. Surg. Res., 2015, 101, S11–S17. Search in Google Scholar

Winter D.A., Biomechanics of normal and pathological gait: implications for understanding human locomotor control, J. Mot. Behav., 1989, 21 (4), 337–355. Search in Google Scholar

Wolfram S., Morse CH.I., Winwood K.L., Hodson-Tole E., McEwan I.M., Achilles tendon moment arm in humans is not affected by inversion/eversion of the foot: a short report, R. Soc. Open. Sci., 2018, 5 (1), DOI: 10.1098/rsos.171358. Search in Google Scholar