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1.
Autism Adulthood ; 5(4): 356-365, 2023 Dec 01.
Artículo en Inglés | MEDLINE | ID: mdl-38116053

RESUMEN

Autistic individuals experience poor vocational outcomes internationally. Transition planning and interventions during adolescence may assist in improving outcomes in adulthood. Strength-based technology clubs show promise in improving outcomes for autistic adolescents by developing skills specific to the Information and Communication Technology industry, and fostering positive traits, such as self-determination. Although strength-based technology clubs have been examined with autistic adolescents, to date, no framework has been proposed to underpin their design and delivery. In this conceptual analysis, we propose a practical framework for delivering strength-based technology clubs for autistic adolescents. The framework builds on work from a previous systematic review of qualitative research and a realist evaluation study of technology clubs for autistic adolescents, combined with theoretical understandings from three health models. The new framework comprised the components of interests, value, autonomy, and requirements, forming the acronym IVAR. Interests refer to strategies drawing on adolescents' areas of interest. Value represents a culture of valuing autistic adolescents as individuals for their unique strengths and skills. Autonomy refers to providing opportunities for adolescents to make decisions, and Requirements refers to aspects of the social and physical environment. Practical recommendations of the framework are discussed, including design and delivery of future strength-based technology clubs, facilitator training, and design activities. The proposed IVAR framework may be useful in guiding the development of strength-based technology clubs. Future research is needed to validate the feasibility and efficacy of the IVAR framework in underpinning the delivery of strength-based technology clubs to autistic adolescents.


Why is this topic important?: The shift from adolescence to adulthood can be challenging for young people on the autism spectrum, and opportunities for employment may be limited. Modern approaches to improving employment outcomes for autistic youth highlight the importance of adopting a strength-based framework, such as matching the strengths and interests of autistic young people to future career pathways. The strengths of many autistic individuals are considered beneficial for employment in the Information and Communication Technology (ICT) sector. Strength-based technology clubs provide opportunities for autistic young people to develop their technological and social skills, meet role models working in the ICT industry, and help them to find work experience. What was the purpose of this article?: The purpose of this article was to develop a new framework for delivering strength-based technology clubs to autistic adolescents. The development of this framework was guided by the authors' earlier work in this area. What do the authors conclude?: The authors proposed a new framework for delivering strength-based technology clubs to autistic adolescents. The framework contains four components, creating the acronym IVAR: Interests, Value, Autonomy, and Requirements. The component, Interests, refers to strategies that draw on adolescents' areas of interest, such as changing activities to include adolescents' focused interests. Value represented a culture of valuing autistic adolescents as individuals for their unique strengths and skills. Autonomy refers to providing opportunities for adolescents to make decisions during the program, and Requirements refers to the design of the social and physical environment. What do the authors recommend for future research on this topic?: The authors recommend that future research should focus on exploring how practical and appropriate the IVAR framework is in supporting the delivery of strength-based technology clubs for autistic adolescents. The four IVAR components are potentially applicable to other areas of community focus to guide strength-based approaches more generally within autism research. How will this analysis help autistic adults now and in the future?: This analysis and discussion will provide researchers, autistic individuals, and the community with practical examples of how service providers can apply IVAR to design and deliver strength-based technology programs for autistic adolescents.

2.
Accid Anal Prev ; 176: 106798, 2022 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-36007435

RESUMEN

Intersections are over-represented in crash statistics internationally, suggesting that treatments targeting intersections could substantially improve road safety. Aligning with a Safe Systems approach, several innovative intersection configurations have been proposed. We evaluated the effectiveness of five designs on reducing speed and modifying conflict angles using a driving simulator. The designs were 1) cut-through, 2) modified restricted squircle, 3) unrestricted squircle, 4) raised approach, and 5) raised intersection. For the higher speed green light condition, speed reductions for vehicles travelling straight through the intersection were seen for all five innovative designs on approach to the intersection and at critical conflict points within the intersection. Within the intersection specifically, speed reductions ranged from 1) 7-8 km/h for the modified restricted squircle, 2) 12.5-16.5 km/h for the unrestricted squircle, raised approach, and raised intersection, and 3) 15-19 km/h for the cut-through. In contrast, speeds for drivers turning right were either not substantially reduced (modified restricted squircle, unrestricted squircle, and raised intersection) or were increased (raised approach and cut-through). Beneficial modification of conflict angles were also observed at conflict points for three of the five designs: cut-through, and two variations of the squircle design. Innovative intersection designs may be effective in reducing intersection crash risk by reducing speeds and conflict angles.


Asunto(s)
Accidentes de Tránsito , Conducción de Automóvil , Accidentes de Tránsito/prevención & control , Simulación por Computador , Recolección de Datos , Planificación Ambiental , Humanos
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