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Original Research

Comparing children’s driving abilities in physical and virtual environments

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 653-660 | Received 17 Sep 2019, Accepted 12 Nov 2019, Published online: 05 Dec 2019

References

  • Campos JJ, Anderson DI, Barbu-Roth MA, et al. Travel broadens the mind. Infancy. 2000;1(2):149–219.
  • Butler C. Effective mobility for children with motor disabilities; 2009. Available from: http://www.Global-Help.org. p. 1–36.
  • Rosen L, Plummer T, Sabet A, et al. RESNA position on the application of power mobility devices for pediatric users. Assist Technol. 2018;1–9. DOI:10.1080/10400435.2017.1415575
  • Livingstone R, Paleg G. Practice considerations for the introduction and use of power mobility for children. Dev Med Child Neurol. 2014;56(3):210–221.
  • Livingstone R, Field D. The child and family experience of power mobility: a qualitative synthesis. Dev Med Child Neurol. 2015;57(4):317–327.
  • Rousseau-Harrison K, Rochette A. Impacts of wheelchair acquisition on children from a person-occupation-environment interactional perspective. Disabil Rehabil: Assist Technol. 2013;8(1):1–10.
  • Butler C. Effects of powered mobility on self-initiated behaviors of very young children with locomotor disability. Dev Med Child Neurol. 1986;28(3):325–332.
  • Butler C, Okamoto G, McKay T. Powered mobility for very young disabled children. Dev Med Child Neurol. 1983;25(4):472–474.
  • Deitz J, Swinth Y, White O. Powered mobility and preschoolers with complex developmental delays. Am J Occup Ther. 2002;56(1):86–96.
  • Guerette P, Furumasu J, Tefft D. The positive effects of early powered mobility on children's psychosocial and play skills. Assist Technol. 2013;25(1):39–48.
  • Jones M, McEwen I, Neas B. Effects of power wheelchairs on the development and function of young children with severe motor impairments. Pediatr Phys Ther. 2012;24(2):131–140.
  • Galloway J, Ryu J, Agrawal S. Babies driving robots: self-generated mobility in very young infants. Intel Serv Robot. 2008;1(2):123–134.
  • Archambault PS, Tremblay S, Cachecho S, et al. Driving performance in a power wheelchair simulator. Disabil Rehabil: Assist Technol. 2012;7(3):226–233.
  • Pronk CN, de Klerk PC, Schouten A, et al. Electric wheelchair simulator as a man machine system. Scand J Rehabil Med. 1980;12(3):129–135.
  • Lateef F. Simulation-based learning: just like the real thing. J Emerg Trauma Shock. 2010;3(4):348–352.
  • Cook D, Hamstra S, Brydges R, et al. Comparative effectiveness of instructional design features in simulation-based education: Systematic review and meta-analysis. Med Teach. 2013;35(1):e867–898.
  • Smolentsev A, Cornick JE, Blascovich J. Using a preamble to increase presence in digital virtual environments. Virtual Real. 2017;21(3):153–164.
  • Cheng A, Lang TR, Starr SR, et al. Technology-enhanced simulation and pediatric education: a meta-analysis. Pediatrics. 2014;133(5):e1313–e1323.
  • Broussard L. Simulation‐based learning: how simulators help nurses improve clinical skills and preserve. Nurs Womens Health. 2008;12(6):521–524. ‏
  • Sanford P. Simulation in nursing education: a review of the research. Qual Rep. 2010;15(4):1006–1011. ‏
  • Weller J, Nestel D, Marshall S, et al. Simulation in clinical teaching and learning. Med J Aust. 2012;196(9):594–595.
  • Pithon T, Weiss PL, Richir S, et al. Wheelchair simulators: a review. Technol Disabil. 2009;21(1-2):1–10.
  • Hasdai A, Jessel AS, Weiss PL. Use of a computer simulator for training children with disabilities in the operation of a powered wheelchair. Am J Occup Ther. 1998;52(3):215–220.
  • Inman D, Loge K, Cram A, et al. Learning to drive a wheelchair in virtual reality. J Spec Educ Technol. 2011;26(3):21–34.
  • Rodriguez N. Development of a wheelchair simulator for children with multiple disabilities. 2015 3rd IEEE VR International Workshop on Virtual and Augmented Assistive Technology (VAAT). 2015 Mar 23; Arles, France: IEEE. p. 19–21.
  • Arlati S, Colombo V, Ferrigno G, et al. Virtual reality-based wheelchair simulators: a scoping review. Assist Technol. 2019;1–2. DOI:10.1080/10400435.2018.1553079
  • Archambault PS, Blackburn É, Reid D, et al. Development and user validation of driving tasks for a power wheelchair simulator. Disabil Rehabil. 2017;39(15):1549–1556.
  • Morère Y, Bourhis G, Cosnuau K, et al. ViEW: a wheelchair simulator for driving analysis. Assist Technol. 2018;8:1–11.
  • Furumasu J, Guerette P, Tefft D. The development of a powered wheelchair mobility program for young children. Technol Disabil. 1996;5(1):41–48.
  • Nilsson L, Durkin J. Assessment of learning powered mobility use—applying grounded theory to occupational performance. J Rehabil Res Dev. 2014;51(6):963–974.
  • Rodby-Bousquet E, Hägglund G. Use of manual and powered wheelchair in children with cerebral palsy: a cross-sectional study. BMC Pediatr. 2010;10(1):59.
  • Torkia C, Ryan SE, Reid D, et al. Virtual community centre for power wheelchair training: experience of children and clinicians. Disabil Rehabil: Assist Technol. 2019;14(1):46–55.
  • Blana E. Driving simulator validation studies: a literature review. Leeds (UK): Institute of Transport Studies, University of Leeds; 1996.
  • Carlozzi NE, Gade V, Rizzo AS, et al. Using virtual reality driving simulators in persons with spinal cord injury: three screen display versus head mounted display. Disabil Rehabil: Assist Technol. 2013;8(2):176–180.
  • Fisher DL, Rizzo M, Caird J, et al. Handbook of driving simulation for engineering, medicine, and psychology. Boca Raton: CRC Press; 2011.
  • Shechtman O, Classen S, Awadzi K, et al. Comparison of driving errors between on-the-road and simulated driving assessment: a validation study. Traffic Inj Prev. 2009;10(4):379–385.
  • Meuleners L, Fraser M. A validation study of driving errors using a driving simulator. Transport Res Part F: Traf Psychol Behav. 2015;29:14–21.

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