Attachement :1
References
1. World Health Organization. (n.d.). Disabilities. Retrieved from https://www.who.int/topics/disabilities/en/ (last accessed: December, 2019).
2. Al-Jadid, S. M. (2013). Disability in Saudi Arabia. Saudi Medical Journal. 34(5), 453-460.
3. World Health Organization. (2019). Disability- a global picture. Retrieved June 2019 from https://www.who.int/disabilities/world_report/2011/chapter2.pdf, (last accessed: December, 2019).
4. General Authority for Statistics. (2017). Disability survey. Retrieved from https://www.stats.gov.sa/sites/default/files/disability_survey_2017_en.pdf, (last accessed: December, 2019).
5. Ministry of Health. (2017). MOH launches “Musanadah” initiative for serving people with disabilities. Retrieved May 2018 from https://www.moh.gov.sa/en/Ministry/MediaCenter/News/Pages/News-2017-01-23-001.aspx, (last accessed: December, 2019).
6. Disabled World. (2019). Physical and mobility impairment information. Retrieved from https://www.disabled-world.com/disability/types/mobility/, (last accessed: December, 2019).
7. World Health Organization. (2010). Fact Sheet on Wheelchairs. Retrieved June 2018 from http://www.searo.who.int/entity/disabilities_injury_rehabilitation/wheelchair_factsheet.pdf, (last accessed: December, 2019).
8. Sumit, D., Mantha, S., & Phalle, V. (2017). Advances in smart wheelchair technology. 1-7. 10.1109/ICNTE.2017.7947914.
9. Noor, A. (2019). The utilization of E-health in the Kingdom of Saudi Arabia. International Research Journal of Engineering and Technology. 6(9): 1229-1239.
10. Alsibai M. H., Sibai, A. & Abdul Manap, S. (2015). A Study on Smart Wheelchair Systems. 4. 10.15282/ijets.4.2015.1.4.1033.
11. Sammer. G, Uhlmann, T., Unbehaun, W., Millonig, A., Mandl, B., Dangschat, J. & Mayr, R. (2012). Identification of mobility-impaired persons and analysis of their travel.
12. United Nations. (2006). Convention on the Rights of Persons with Disabilities and Optional Protocol. Retrieved June 2018 from https://www.un.org/disabilities/documents/convention/convoptprot-e.pdf. (last accessed: December, 2019).
13. Elsheikh, A. S. & Alqurashi A.M. (2013). Disabled future in the Kingdom of Saudi Arabia. ISOR Journal of Humanities and Social Science. 16, 68-71.
14. Bindawas, S. M., & Vennu, V. S. (2016). Stroke rehabilitation. A call to action in Saudi Arabia. Neurosciences (Riyadh, Saudi Arabia), 21(4), 297–305. doi:10.17712/nsj.2016.4.20160075.
15. Japan International Cooperation Agency Planning and Evaluation Department. (2002). Country Profile on Disability Kingdom of Saudi Arabia. Retrieved May 2018 from http://siteresources.worldbank.org/DISABILITY/Resources/Regions/MENA/JICA_Saudi_Arabia.pdf. (last accessed: December, 2019).
16. Prince Salman Center for Disability Research. (2010). Universal Accessibility: Built Environment Guidelines for the Kingdom of Saudi Arabia. Retrieved June 2018 from http://www.qaderoon.sa/wp-content/uploads/2014/10/The-Built-Environment-Guidelines.pdf. (last accessed: December, 2019).
17. Aleisa E, Al-Sobayel, H., Buragadd. S., & Rao, M. G. (2014). Rehabilitation services in Saudi Arabia: An overview of its current structure and future challenges. J Gen Practice 2:184. doi:10.4172/2329-9126.1000184.
18. Stucki G. & Melvin J. (2007). The international classification of functioning, disability and health: A unifying model for the conceptual description of physical and rehabilitation medicine. J Rehabil Med. 39(4):286-92. PubMed PMID: 17468800.
19. Bindawas, S. & Vennu, V. (2018). The national and regional prevalence rates of disability, type of disability and severity in Saudi Arabia—Analysis of 2016 demographic survey data. International Journal of Environmental Research and Public Health. 15. 419. 10.3390/ijerph15030419.
20. Robert, A. A., & Zamzami, M. M. (2014). Stroke in Saudi Arabia: A review of the recent literature. The Pan African Medical Journal, 17, 14. doi:10.11604/pamj.2014.17.14.3015.
21. Prasad S. K., Kumar P. & Parandesi E.V.N. (2017). Smart wheel chair. International Journal of Engineering Science and Computing.7 (4), 10585-10587.
22. Leaman, J. & La, H. (2017). A comprehensive review of smart wheelchairs: Past, present and future. IEEE Transactions on Human-Machine Systems. PP. 10.1109/THMS.2017.2706727.
23. Belic, D., & Kunica, Z. (2015). A concept of smart wheelchair. Annals of the Faculty of Engineering Hunedoara, 13(1), 37.
24. Nishimori, M., Saitoh, T. & Konishi, R. (2007). Voice controlled intelligent wheelchair. Proceedings of the SICE Annual Conference. 336 - 340. 10.1109/SICE.2007.4421003.
25. Duran, L., Fernández-Carmona, M., Urdiales, C., Peula, J. & Sandoval, F. (2009). Conventional joystick vs. Wiimote for holonomic wheelchair control. 1153-1160. 10.1007/978-3-642-02478-8_144.
26. Swati, J. & Sanjivkumar, J. (2007). Voice and eye controlled smart wheelchair for physically disabled persons. International Journal of Innovative Research in Computer and Communication Engineering. (5) 4 16-20.
27. Ashraf, M. & Ghazali, M. (2011). Interaction design for wheelchair using Nintendo Wiimote controller. Proceedings - 2011 International Conference on User Science and Engineering, i-USEr 2011. 10.1109/iUSEr.2011.6150534.
28. Heartway USA. (n.d). Sahara Kx power wheelchair. Retrieved from: https://www.mobilityscootersdirect.com/blog/affordable-power-wheelchairs/power-wheelchair-performance-warranty/attachment/heartway-usa-sahara-kx-power-wheelchair. (last accessed: December, 2019).
29. Rehab Mart (n.d). Reclining wheelchair: Rental wheelchair manual light reclining. Retrieved May 2018 from https://rehabmart.com.sg/services/rental-hospital-equipment/rental-wheelchair-manual-light-reclining. (last accessed: December, 2019).
30. June, L. (2009). Mid-controlled wheelchair prototype is truly, insanely awesome. Retrieved from: https://www.engadget.com/2009/05/04/mind-controlled-wheelchair-prototype-is-truly-insanely-awesome. (last accessed: December, 2019).
31. Cooper, A. R. (1990). Wheelchair racing sports science: A review. Journal of Rehabilitation Research and Development 27(3), 295-312. Retrieved from https://pdfs.semanticscholar.org/67db/3b8dc1093706aaeb2cbf3b6d18ce1b50f6c5.pdf. (last accessed: December, 2019).
32. Wechsler, K. (2010). Stand up and go with mobile standers and standing wheelchairs. Retrieved from: https://www.mda.org/quest/article/stand-and-go-mobile-standers-and-standing-wheelchairs. (last accessed: December, 2019).
33. Adhikari, S., Raut, R., & Singh, R. (2013). Smart Wheel Chair. 10.13140/2.1.1288.0648.
34. Belic, D., & Kunica, Z. (2015). A concept of smart wheelchair. Annals of the Faculty of Engineering Hunedoara, 13(1), 37.
35. Njah, M., & Jallouli, M. (2014). Combination of the DVZ method, particle filter, and fuzzy controller for electric wheelchair navigation. International Journal of Navigation and Observation, 2014.
36. Li, X., Zhao, G., Jia, S., Xu, C., & Qin, B. (2016). Velocity measurement for omni-directional intelligent wheelchair. Transactions of the Institute of Measurement and Control, 38(11), 1320-1333.
37. Arzak, M. I., Sunarya, U., & Hadiyoso, S. (2016). Design and implementation of wheelchair controller based electroencephalogram signal using microcontroller. International Journal of Electrical and Computer Engineering (IJECE), 6(6), 2878-2886.
38. Echefu, S. (2016). Towards natural human control and navigation of autonomous wheelchairs. Retrieved from https://pdfs.semanticscholar.org/710e/ab9ea2a54d2088e825e6ae79d9a1850c9a05.pdf. (last accessed: December, 2019).
39. Diez, P. F., Mut, V. A., Laciar, E., & Perona, E. M. A. (2014). Mobile robot navigation with a self-paced brain–computer interface based on high-frequency SSVEP. Robotica, 32(5), 695-709.
40. Kim, E. Y. (2016). Wheelchair navigation system for disabled and elderly people. Sensors, 16(11), 1806.
41. Rudolf, A., Repnik, J., Drstvensek, I., Görlichová, L., Salobir, A., Kirbis, J., & Selimovic, I. (2017). New technologies in the development of ergonomic garments for wheelchair users in a virtual environment/Noile tehnologii în dezvoltarea îmbracamintei ergonomice pentru utilizatorii de scaune cu rotile. Industria Textila, 68(2), 83.
42. Barriuso, A. L., Pérez-Marcos, J., Jiménez-Bravo, D. M., Villarrubia González, G., & De Paz, J. F. (2018). Agent-based intelligent interface for wheelchair movement control. Sensors, 18(5), 1511.
43. Goldberg, M., Pearlman, J., Rushton, P., & Cooper, R. (2018). The International Society of Wheelchair Professionals (ISWP): A Resource Aiming to Improve Wheelchair Services Worldwide.
44. Kaufmann, T., Herweg, A., & Kübler, A. (2014). Toward brain-computer interface-based wheelchair control utilizing tactually-evoked event-related potentials. Journal of Neuroengineering and Rehabilitation, 11(1), 7.
45. Mori, Y., Sakai, N., & Katsumura, K. (2015). Development of a wheelchair with a lifting function. Advances in Mechanical Engineering, 4, 803014.
46. Aly, W. H. F. (2015). Towards independency using LMN4DISABLED system for disabled. International Journal of Distributed Sensor Networks, 11(8), 212657.
47. Best, K. L., Miller, W. C., Eng, J. J., Routhier, F., & Goldsmith, C. (2014). Randomized controlled trial protocol feasibility: Wheelchair self-efficacy enhanced for use (WheelSeeU). Canadian Journal of Occupational Therapy, 81(5), 308-319.
48. Khetarpal, A. (2014). Information and communication technology (ICT) and disability. Review of Market Integration, 6(1), 96-113.
49. Giesbrecht, E. M., Miller, W. C., & Woodgate, R. L. (2015). Navigating uncharted territory: a qualitative study of the experience of transitioning to wheelchair use among older adults and their care providers. BMC Geriatrics, 15(1), 91.
50. Agmon, M., Sa’ar, A., & Araten-Bergman, T. (2016). The person in the disabled body: a perspective on culture and personhood from the margins. International Journal for Equity in Health, 15(1), 147.
51. Rapegno, N., & Ravaud, J. F. (2017). Disability, residential environment and social participation: factors influencing daily mobility of persons living in residential care facilities in two regions of France. BMC Health Services Research, 17(1), 683.
52. Rushton, P. W., Labbé, D., Demers, L., Miller, W. C., Mortenson, W. B., & Kirby, R. L. (2017). Understanding the burden experienced by caregivers of older adults who use a powered wheelchair: a cross-sectional study. Gerontology and Geriatric Medicine, 3, 2333721417703736.
53. Noor, A (2019). Discovering Gaps in Saudi Education for Digital Health Transformation International Journal of Advanced Computer Science and Applications (IJACSA), 10(10), 2019. http://dx.doi.org/10.14569/IJACSA.2019.0101015
54. Burrola-Mendez, Y., Goldberg, M., Gartz, R., & Pearlman, J. (2018). Development of a hybrid course on wheelchair service provision for clinicians in international contexts. PloS one, 13(6), e0199251.
55. Jones, M., Morris, J., & Deruyter, F. (2018). Mobile healthcare and people with disabilities: Current state and future needs. International Journal of Environmental Research and Public Health, 15(3), 515.
56. Yousef R. (2018). Disability, social work and social exclusion: New strategies for achieving social inclusion of people with physical disabilities in the Kingdom of Saudi Arabia. Retrieved from http://usir.salford.ac.uk/id/eprint/50530/1/Final%20PhD%20Thesis%20Reemah%20Yousef.pdf. (last accessed: December, 2019).
57. Mulazadh A. M. & Al-Harbi S. T. (2016). Design of the built environment and the integration of wheelchair users in the Kingdom of Saudi Arabia: Commentary and exploratory study. Journal on Developmental Disabilities, 22(2), 121.
58. Ghogale, A., Naik Gauresh, Silva D’ P., Pinto, Devillers and Vanjari Sachin. (2018). Stair-climbing wheelchairs: A literature review. International Journal for Scientific Research & Devlopment. 6, 46-48. Retrieved from: https://www.academia.edu/37889049/Stair-Climbing_Wheelchairs_A_Literature_Review_IJSRDV6I90025. (last accessed: December, 2019).