Have a personal or library account? Click to login
Lower extremity joint reaction forces and plantar fascia strain responses due to incline and decline walking Cover

Lower extremity joint reaction forces and plantar fascia strain responses due to incline and decline walking

Open Access
|Apr 2022

References

  1. Alexander N., Strutzenberger G., Ameshofer L.M., Schwameder H., Lower limb joint work and joint work contribution during downhill and uphill walking at different inclinations, J. Biomech., 2017, 61, 75–80.
  2. Abdulhasan Z.M., Buckley J.G., Gait termination on declined compared to level surface; contribution of terminating and trailing limb work in arresting centre of mass velocity, Med. Eng. Phys., 2019, 66, 75–83.
  3. Telhan G., Franz J.R., Dicharry J., Wilder R.P., Riley P.O., Kerrigan D.C., Lower limb joint kinetics during moderately sloped running, J. Athl. Train., 2010, 45 (1), 16–21.
  4. Alexander N., Schwameder H., Lower limb joint forces during walking on the level and slopes at different inclinations, Gait Posture, 2016, 45, 137–142.
  5. Kawad M., Hata K., Kiyama R., Maeda T., Yone K., Biomechanical characterization of slope walking using musculoskeletal model simulation, Acta Bioeng. Biomech., 2018, 20 (1), 117–125.
  6. Bolgla L.A., Malone T.R., Plantar fasciitis and the windlass mechanism: a biomechanical link to clinical practice, J. Athl. Train., 2004, 39 (1), 77–82.
  7. Aquino A., Payne C., Function of the plantar fascia, Foot., 1999, 9, 73–78.
  8. Crary J.L., Hollis J.M., Manoli A., The effect of plantar fascia release on strain in the spring and long plantar ligaments, Foot Ankle Int., 2003, 24 (3), 245–250.
  9. Wright D.G., Rennels D.C., A study of the elastic properties of plantar fascia, J. Bone Joint Surg. Am., 1964, 46 (3), 482–942.
  10. Bartold S.J., The plantar fascia as a source of pain – Biomechanics, presentation and treatment, J. Bodyw. Mov. Ther., 2004, 8, 214–226.
  11. Da Costa Barbosa R., Vieira M.F., Postural control of elderly adults on inclined surfaces, Ann. Biomed. Eng., 2017, 45 (3), 726–738.
  12. Soangra R., Bhatt H., Rashedi E., Effects of load carriage and surface inclination on linear and non-linear postural variability, Saf. Sci., 2018, 110, 427–437.
  13. Ho K.Y., French T., Klein B., Lee Y., Patellofemoral joint stress during incline and decline running, Phys. Ther. Sport, 2018, 34, 136–140.
  14. DeWolf A.H., Willems P.A., Running on a slope: A collision-based analysis to assess the optimal slope, J. Biomech., 2019, 83, 298–304.
  15. Koo S., Park M.S., Chung C.Y., Yoon J.S., Park C., Lee K.M., Effects of walking speed and slope on pedobarographic findings in young healthy adults, PLoS One, 2019, 14 (7), 1–11.
  16. Miranda D.L., Hsu W., Petersen K., Fitzgibbons S., Niemi J., Lesniewski-Laas N., Walsh C.J., Sensory enhancing insoles modify gait during inclined treadmill walking with load, Med. Sci. Sports Exerc., 2016, 48 (5), 860–868.
  17. Damavandi M., Dixon P.C., Pearsall D.J., Ground reaction force adaptations during cross-slope walking and running, Hum. Mov. Sci., 2012, 31 (1), 182–189.
  18. Kuster M., Wood G.A., Sakurai S., Blatter G., Downhill walking: A stressful task for the anterior cruciate ligament? A biomechanical study with clinical implications, Knee Surgery, Sports Traumatol., Arthrosc., 1994, 2 (1), 2–7.
  19. Haight D.J., Lerner Z.F., Board W.J., Browning R.C., A comparison of slow, uphill and fast, level walking on lower extremity biomechanics and tibiofemoral joint loading in obese and nonobese adults, J. Orthop. Res., 2014, 32 (2), 324–330.
  20. Ferber R., Benson B., Changes in multi-segment foot biomechanics with a heat-mouldable semi-custom foot orthotic device, J. Foot Ankle Res., 2011, 4 (1), 1–8
  21. Leardini A., Benedetti M.G., Catani F., Simoncini L., Giannini S., An anatomically based protocol for the description of foot segment kinematics during gait, Clin. Biomech., 1999, 14 (8), 528–536.
  22. McDonald K.A., Stearne S.M., Alderson J.A., North I., Pires N.J., Rubenson J., The role of arch compression and metatarsophalangeal joint dynamics in modulating plantar fascia strain in running, PLoS One, 2016, 11 (4), 1–16.
  23. Sinclair J., Atkins S., Vincent H., The effects of various running inclines on three-segment foot mechanics and plantar fascia strain, Hum. Mov., 2014, 15 (4), 209–215.
  24. Silder A., Besier T., Delp S.L, Predicting the metabolic cost of incline walking from muscle activity and walking mechanics, J. Biomech., 2012, 45 (10), 1842–1849.
  25. Wen C., Cates H.E., Weinhandl J.T., Crouter S.E., Zhang S., Knee biomechanics of patients with total knee replacement during downhill walking on different slopes, J. Sport Heal. Sci., 2021, 1–9.
  26. Lewis C.L., Sahrmann S.A., Moran D.W., Effect of hip angle on anterior hip joint force during gait, Gait Posture, 2010, 32 (4), 603–607.
  27. Biga L.M., Dawson S., Harwell A., Hopkins R., Kaufmann J., Lemaster M., Matern P., Morrison-Graham K., Quick D., Runyeon J., Anatomy & Physiology, 2008. [Online]. Available: https://open.oregonstate.education/aandp/chapter/9-6-anatomy-of-selected-synovial-joints/. [Accessed: 28-Sep-2021].
  28. Hong S.W., Wu C.H., Lu T.W., Hu J.S., Li J.D., Leu T.H., Huang C.E., Biomechanical strategies and the loads in the lower limbs during downhill walking with different inclination angles, Biomed. Eng. – Appl. Basis Commun., 2014, 26 (6), 1–9.
  29. Michnik R., Zadoń H., Nowakowska-Lipiec K., Jochymczyk-Woźniak K., Myśliwiec A., Mitas A.W., The effect of the pelvis position in the sagittal plane on loads in the human musculoskeletal system, Acta Bioeng. Biomech., 2020, 22 (3), 33–42.
  30. Rowe P.J., Myles C.M., Walker C., Nutton R., Knee joint kinematics in gait and other functional activities measured using flexible electrogoniometry: How much knee motion is sufficient for normal daily life?, Gait Posture, 2000, 12 (2), 143–155.
  31. Gu Y., Li Z., Mechanical information of plantar fascia during normal gait, Phys. Procedia, 2012, 33, 63–66.
  32. Marieswaran M., Sikidar A., Rana A., Singh D., Mansoori N., Lalwani S., Kalyanasundaram D., A cadaveric study on the rate of strain dependent behaviour of human anterior cruciate ligament, Acta Bioeng. Biomech., 2021, 23 (1), 45–57.
  33. Haggerty M., Dickin D.C., Popp J., Wang H., The influence of incline walking on joint mechanics, Gait Posture, 2014, 39 (4), 1017–1021.
  34. Kuster M., Sakurai S., Wood G.A., Kinematic and kinetic comparison of downhill and level walking, Clin. Biomech., 1995, 10 (2), 79–84.
  35. Cheng H.Y.K., Lin C.L., Wang H.W., Chou S.W., Finite element analysis of plantar fascia under stretch-the relative contribution of windlass mechanism and Achilles tendon force, J. Biomech., 2008, 41 (9), 1937–1944.
DOI: https://doi.org/10.37190/abb-01957-2021-01 | Journal eISSN: 2450-6303 | Journal ISSN: 1509-409X
Language: English
Page range: 67 - 74
Submitted on: Oct 12, 2021
Accepted on: Jan 14, 2022
Published on: Apr 1, 2022
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Noor Arifah Azwani Abdul Yamin, Khairul Salleh Basaruddin, Shahriman Abu Bakar, Ahmad Faizal Salleh, Mohd Hanafi Mat Som, Asyraf Hakimi Abu Bakar, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.