Gait Analysis of Ankle Joints of Indonesians at Low, Medium and High Speeds

Authors

  • Robin Novriansyah Doctoral Study Program of Medical and Health Science , Universitas Diponegoro, Department of Surgery, Faculty of Medicine, Diponegoro University, Semarang, Indonesia, Dr Kariadi General Hospital, Semarang, Indonesia, Indonesia
  • Jason Reynald Hadi Faculty of Medicine, Diponegoro University, Semarang, Indonesia, Indonesia
  • Yuriz Bakhtiar Department of Neurosurgery, Faculty of Medicine, Diponegoro University, Semarang, Indonesia, Dr Kariadi General Hospital, Semarang, Indonesia, Indonesia
  • Amin Husni Neurology Department, Dr Kariadi General Hospital, Diponegoro University, Semarang, Indonesia, Dr Kariadi General Hospital, Semarang, Indonesia, Indonesia
  • Rifky Ismail Department of Mechanical Engineering Diponegoro University, Semarang, Indonesia, Center for Bimomechanics, Biomaterial, Biomechatronics and Biosignal Processing (CBIOM3S), Diponegoro University, Semarang, Indonesia, Indonesia

DOI:

https://doi.org/10.36408/mhjcm.v11i3.1175

Keywords:

Ankle joints, dorsiflexion, gait analysis, plantar flexion

Abstract

Background : Amputation is a loss of body part, and most amputations are lower extremity amputations. The most common is transtibial amputation. After an amputation a person will need a prosthesis. However, up to now there has been no functional prosthesis specifically made for Indonesians who undergo transtibial amputation because the ankle joint gait data that are currently used are European gait data. So it is necessary to measure the normal gait data of Indonesians' ankle joint. The aims of this study was to measure the normal gait data of the ankle joint of Indonesian population

Methods : The Research sample is Indonesians aged 18–26 years with normal gait measured by the 2DMA (two-dimensional motion analyzers) at low, medium and high speeds. The resulting data is searched for the mean and standard deviations and then an independent t-test is performed between normal gait data of Indonesians and Europeans Results : Indonesians have a range of maximum dorsiflexion values for low, medium, and high speeds of : 7.9°, 8.3°, 8.9° and maximum plantar flexion for low, medium, and high speeds of 13.4°, 20.6°, 26°. In the comparison test there was a significant difference between the maximum plantar flexion angle of Indonesians and Europeans.

Conclusion : Indonesians have a range of maximum dorsiflexion values for low, medium, and high speeds of 7.9°, 8.3°, 8.9° and maximum plantar flexion for low, medium, and high speeds of: 13.4°, 20.6°, 26°. There is a difference between the normal gait of the ankle joint of Indonesians and Europeans.

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References

1. Dillingham TR, Pezzin LE, Shore Reamputation, mortality, and health care costs among persons with dysvascular lower- limb amputations. Arch Phys Med Rehabil. 2005 m.;86(3):480–6.

2. Vitriana Rehabilitasi Pasien Amputasi Bawah Lutut Dengan Menggunakan Immidiate Post Operative Prosthetic. Univ Padjajaran. 2002

3. Kow RY, Low CL, Ruben JK, Zaharul-Azri MZ, Lim Predictive Factors of Major Lower Extremity Amputations in Diabetic Foot Infections: A Cross-sectional Study at District Hospital in Malaysia. Malaysian Orthop J. 2019;13(3):45–52.

4. Shalaka Dhankar AB. A Case of Fracture Shaft Femur in a Patient with Transtibial 2020 J Datta Meghe Inst Med Sci Univ. 2019 m.;14(1):394–6.

5. Pran L, Baijoo S, Harnanan D, Slim H, Maharaj R, Naraynsingh Quality of Life Experienced by Major Lower Extremity Amputees. Cureus. 2021. Aug 25 ;13(8).

6. Brockett CL, Chapman GJ. Biomechanics of the ankle. Orthop 2016;30(3):232–8.

7. Stergiou N. Biomechanics and Gait Analysis. T. 53, Elsevier. 1689–1699 p.

8. Chandra D, Anggraeni ND, Dirgantara T, Mihradi S, Mahyuddin AI. Improvement of Three-dimensional Motion Analyzer System for the Development of Indonesian Gait 2015 m.;2(February):268–74.

9. Dubin A. Gait. The role of the ankle and foot in walking. Med Clin North 2014 m.;98(2):205–11.

10. Prakash C, Kumar R, Mittal Recent developments in human gait research: parameters, approaches, applications, machine learning techniques, datasets and challenges. Dep Community Heal Physiother Ravi Nair Physiother Coll. 2018 m.;49(1).

11. Whittle, Michael , Walter M. Cline HCH. An Introduction to Gait Analysis, 4th Ed. utterworth-Heinemann; 4th Ed. 2007 m.;4:135–40.

12. Hill CN, Reed W, Schmitt D, Sands LP, Queen RM. Racial differences in gait mechanics. Journal of Biomechanics. 2020 Nov 9;112:110070.

13. Klaewkasikum K, Patathong T, Angsanuntsukh C, Woratanarat T, Sanguantrakul J, Woratanarat P. The ankle kinematic reference of normal gait pattern in Thai adults. Front 2022 m.;9(August):1–10.

14. Fukuchi CA, Fukuchi RK, Duarte M. Effects of walking speed on gait biomechanics in healthy participants: A systematic review and meta-analysis. Syst 2019 m.;8(1):1–11.

15. Alleva S, Antonelli MG, Zobel PB, Durante F. Biomechanical design and prototyping of a powered ankle-foot prosthesis. Materials (Basel). 2020 ;13(24):1–15.

16.Cho SH, Park JM, Kwon Gender differences in three dimensional gait analysis data from 98 healthy Korean adults. Clin Biomech. 2004 m.;19(2):145–52.

17. Elbaz A, Artaud F, Dugravot A, Tzourio C, Singh-Manoux A. The gait speed advantage of taller stature is lost with age. Sci 2018 m.;8(1):1–8.

18. Bohannon RW. Comfortable and maximum walking speed of adults aged 20–79 years: Reference values and determinants. Age 1997 m.;26(1):15–9.

19. Fukuchi CA, Fukuchi RK, Duarte A public dataset of overground and treadmill walking kinematics and kinetics in healthy individuals. PeerJ. 2018 m.;2018(4):1–17.

20. Koopman B, van Asseldonk EHF, van der Kooij H. Speed- dependent reference joint trajectory generation for robotic gait J Biomech. 2014 Apr 11;47(6):1447–58.

Additional Files

Published

2024-11-29

How to Cite

1.
Novriansyah R, Hadi JR, Bakhtiar Y, Husni A, Ismail R. Gait Analysis of Ankle Joints of Indonesians at Low, Medium and High Speeds. Medica Hospitalia J. Clin. Med. [Internet]. 2024 Nov. 29 [cited 2024 Dec. 21];11(3):283-8. Available from: http://medicahospitalia.rskariadi.co.id:8080/medicahospitalia/index.php/mh/article/view/1175

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