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A Walker Designed for Parkinson’s Disease Patients Based on a Survey in Dhaka, Bangladesh Cover

A Walker Designed for Parkinson’s Disease Patients Based on a Survey in Dhaka, Bangladesh

Open Access
|Dec 2020

References

  1. [1] Maryland, B. “Parkinson’s Disease: Hope Through Research”, no. December. National Institute of Neurological Disordres and Stroke, National Institute of Health, pp. 1 – 50, 2014.
  2. [2] Jankovic, J. “Parkinson’s disease: clinical features and diagnosis”, J. Neurol. Neurosurg. Psychiatry 1957, pp. 368 – 376, 2008.
  3. [3] Reeve, A., Simcox, E., Turnbull, D. “Ageing and Parkinson’s disease: Why is advancing age the biggest risk factor?”, Ageing Res. Rev. 14 (1), pp. 19 – 30, 2014.
  4. [4] Calabrese, V. P., et al. “Projected Number of People With Parkinson Disease in the Most Populous Nations, 2005 Through 2030”, Neurology 69 (2), pp. 223 – 224, 2007.
  5. [5] Bryant, M. S., Rintala, D. H., Graham, J. E., Hou, J. G., Protas, E. J. “Determinants of use of a walking device in persons with Parkinson’s disease.”, Arch. Phys. Med. Rehabil. 95 (10), pp. 1940 – 1945, 2014.
  6. [6] Cubo, E., Moore, C. G., Leurgans, S., Goetz, C. G. “Wheeled and standard walkers in Parkinson’s disease patients with gait freezing”, Park. Relat. Disord. 10 (1), pp. 9 – 14, 2003.
  7. [7] Rahman, S., Griffin, H. J., Quinn, N. P., Jahanshahi, M. “On the nature of fear of falling in Parkinson’s disease”, Behav. Neurol. 24 (3), pp. 219 – 228, 2011.
  8. [8] Kegelmeyer, D. A., Parthasarathy, S., Kostyk, S. K., White, S. E., Kloos, A. D. “Assistive devices alter gait patterns in Parkinson disease: Advantages of the four-wheeled walker”, Gait Posture 38 (1), pp. 20 – 24, 2013.
  9. [9] Constantinescu, R., Leonard, C., Deeley, C., Kurlan, R. “Assistive devices for gait in Parkinson’s disease”, Park. Relat. Disord. 13 (3), pp. 133 – 138, 2007.
  10. [10] Hauser, J. R., Clausing, D. “The House of Quality”, Harvard Business Review, pp. 63 – 73, 1988.
  11. [11] Stevens, R. W. “Folding mechanism for a wheelchair”, US6572133B1, 2003.
  12. [12] “DINED anthropometric database.” [Online]. Available: https://dined.io.tudelft.nl/en/database/tool. [Accessed: 16-Jan-2020].
  13. [13] Doherty, K. M., et al. “Postural deformities in Parkinson’s disease”, Lancet Neurol. 10 (6), pp. 538 – 549, 2011.
  14. [14] “Causes and Corrections of Caster Flutter.” [Online]. Available: https://www.casterconcepts.com/solutions/ergonomic-casters/causes-and-corrections-of-caster-flutter/. [Accessed: 15-Apr-2020].
  15. [15] Figueiredo, J. L., Bernardo, C., Baker, R. T. K., Hüttinger. K. J., Eds. ”Carbon Fibers Filaments and Composites”, Springer Netherlands, 1990.
  16. [16] “HexPly 8552 Epoxy Matrix,” Product Data Sheet. [Online]. Available: https://www.hexcel.com/user_area/content_media/raw/HexPly_8552_us_DataSheet.pdf. [Accessed: 22-Nov-2019].
  17. [17] Groover, M. P. ”Fundamentals of Modern Manufacturing”, 4th ed. Wiley, 2010.
  18. [18] “HexPly Prepreg Technology.” [Online]. Available: https://www.hexcel.com/user_area/content_media/raw/Prepreg_Technology.pdf. [Accessed: 20-Feb-2020].
  19. [19] “SP Systems Guide to composites.” [Online]. Available: http://www.composites.ugent.be/home_made_composites/documentation/SP_Composites_Guide.pdf. [Accessed: 20-Feb-2020].
  20. [20] Callister, W. D., Jr. ”Materials Science and Engineering: An Introduction”, 9th ed. Wiley, 2014.
  21. [21] Roylance, D. ”Mechanical properties of materials”, MIT, 2008.
  22. [22] Kissell, J. R., Ferry, R. L. ”Aluminum Structures: A Guide to Their Specifications”, 2nd ed. John Wiley & Sons, Inc., 2002.
  23. [23] Stienstra, D. “Introduction to Design for (Cost Effective) Assembly and Manufacturing.” [Online]. Available: http://me.gatech.edu/files/capstone/L071ME4182DFA. [Accessed: 20-Apr-2020].
  24. [24] Swift, K. G., Booker, J. D. ”Manufacturing Process Selection Handbook”, 1st ed. Elsevier Ltd, 2013.
  25. [25] Aharonson, V., Seedat, N., Schlesinger, I., McDonald, A., Dubowsky, S., Korczyn, A. “Feasibility of an instrumented walker to quantify treatment effects on Parkinson’s patient gait”, in 2018 Electric Electronics, Computer Science, Biomedical Engineerings’ Meeting, EBBT 2018, pp. 1 – 4, 2018.
  26. [26] Mou, W. H., Chang, M. F., Liao, C. K., Hsu, Y. H., Tseng, S. H., Fu, L. C. “Context-aware assisted interactive robotic walker for Parkinson’s disease patients”, in IEEE International Conference on Intelligent Robots and Systems, pp. 329 – 334, 2012.
  27. [27] Wu, H. K., Chen, H. R., Chen, W. Y., Lu, C. F., Tsai, M. W., Yu, C. H. “A novel instrumented walker for individualized visual cue setting for gait training in patients with Parkinson’s disease”, Assist. Technol., pp. 1 – 11, 2018.
  28. [28] Frydrýšek, K., Čepica, D., Halo, T. “Stochastic loading of a sitting human”, Strojnícky časopis – Journal of Mechanical Engineering 69 (2), pp. 97 – 110, 2019. DOI: 10.2478/scjme-2019-0020
  29. [29] Ranakoti, L., Pokhriyal, M., Kumar, A. “Natural fibers and biopolymers characterization: Future Potential Composite Material”, Strojnícky časopis – Journal of Mechanical Engineering 68 (1), pp. 33 – 50, 2018. DOI: 10.2478/scjme-2018-0004
  30. [30] Franchignoni, F., Martignoni, E., Ferriero, G., Pasetti, C. “Balance and fear of falling in Parkinson’ s disease”, Parkinsonism Relat. Disord. 11, pp. 427 – 433, 2005.
DOI: https://doi.org/10.2478/scjme-2020-0020 | Journal eISSN: 2450-5471 | Journal ISSN: 0039-2472
Language: English
Page range: 55 - 66
Published on: Dec 12, 2020
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2020 Dibakar Sarker, Maruf Ul Karim, Md. Sharjil Ahamed, Farzana Sultana, Zahidul Islam, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.