Evidence-based technology design and commercialisation: Recommendations derived from research in education and autism

被引:22
作者
Fletcher-Watson S. [1 ]
机构
[1] University of Edinburgh, Centre for Clinical Brain Sciences, 5th Floor Kennedy Tower, Morningside Terrace, Edinburgh
关键词
Autism spectrum disorder; Education; Intervention; Knowledge exchange; Participatory design; Technology;
D O I
10.1007/s11528-014-0825-7
中图分类号
学科分类号
摘要
The proliferation of mobile technologies and apps raises questions for researchers in the field of educational technology. Many apps are marketed as having impact on learning or therapeutic outcome in populations with additional support needs. This paper briefly outlines three possible academic responses to the rise of therapeutic technologies for vulnerable populations. These are: reviewing existing scientific evidence to inform design; knowledge exchange with consumers and commercial partners; and rigorous evaluation of technologies in an academic context. The examples are drawn from autism research, but have implications for the evaluation of technologies generally, and for provision of guidance to various user communities. Better communication and closer working between developers, researchers and consumers is necessary to ensure relevant research outcomes and evidence-based practice in educational technology. The paper concludes with concrete recommendations for researchers in Education, Psychology, or Computer Science in carrying out work relevant to commercial enterprise and consumers. © 2015, Association for Educational Communications and Technology.
引用
收藏
页码:84 / 88
页数:4
相关论文
共 21 条
[1]  
Baird G., Simonoff E., Pickles A., Chandler S., Loucas T., Meldrum D., Charman T., Prevalence of disorders of the autism spectrum in a population cohort of children in south thames: The special needs and autism project (snap), Lancet, 368, 9531, pp. 210-215, (2006)
[2]  
Durkin K., Whitehouse A., Jaquet E., Ziatas K., Walker A.J., Cell phone use by adolescents with Asperger syndrome, Research in Autism Spectrum Disorders, 4, pp. 314-318, (2010)
[3]  
Elsabbagh M., Divan G., Koh Y.J., Kim Y.S., Kauchali S., Marcin C., Wang, C, Global prevalence of autism and other pervasive developmental disorders. Autism Research, 5, 3, pp. 160-179, (2012)
[4]  
Fletcher-Watson S., A targeted review of computer-assisted learning for people with autism spectrum disorder: Towards a consistent methodology, Review Journal of Autism and Developmental Disorders, 1, 2, pp. 87-100, (2014)
[5]  
Fletcher-Watson S., Durkin K., Uses of new technologis by young people with neurodevelopmental disorders: Motivations processes and cognition, Neurodevelopmental Disorders: Research Challenges and Solutions, (2015)
[6]  
Fletcher-Watson S., Pain H., Hammond S., Humphry A., (2014)
[7]  
Frauenberger C., Good J., Keay-Bright W., Designing technology for children with special needs: Briding perspectives through participatory design, CoDesign, 7, 1, pp. 1-28, (2011)
[8]  
Gillespie-Smith K., Fletcher-Watson S., Designing AAC systems for children with autism: Evidence from eye tracking research, Augmentative and Alternative Communication(0), pp. 1-12, (2014)
[9]  
Grynszpan O., Weiss P.L., Perez-Diaz F., Gal E., Innovative technology-based interventions for autism spectrum disorders: A meta-analysis, Autism, 18, 4, pp. 346-361, (2013)
[10]  
Guha M.L., Druin A., Fails J.A., Cooperative inquiry revisited: Reflections of the past and guidelines for the future of intergenerational co-design, International Journal of Child-Computer Interaction, 1, 1, pp. 14-23, (2012)