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Saira Bano; Kanwal Atif; Syed Atif Mehdi – Education and Information Technologies, 2024
Educational Robotics (ER) is an upcoming trend in education. It has been introduced in classrooms to improve the learning environment. It provides opportunities for young learners by promoting knowledge-building activities. STEM (Science, Technology, Engineering, and Mathematics) education is viewed as a catalyst to ensure a successful future in…
Descriptors: Robotics, STEM Education, Intervention, Elementary Secondary Education
Theodosios Sapounidis; Sokratis Tselegkaridis; Dimitrios Stamovlasis – Journal of Research on Technology in Education, 2024
Educational Robotics (ER) and Science, Technology, Engineering, Mathematics (STEM) have entered schools and are parts of formal and informal education. Consequently, a wide range of relevant activities and interventions, from kindergarten to high school, are carried out emphasizing their potential benefits, in relation to traditional curriculum,…
Descriptors: Robotics, STEM Education, Research Reports, Databases
Liu Yifu; Ma Yan; Huang Libing; Xiao Chunling; Ding Tao – Education and Information Technologies, 2025
Interventions utilizing human-computer interaction (HCI) in autism rehabilitation have gained popularity, yet their efficacy has not been fully elucidated. This meta-analysis assessed 30 international studies from the past decade that employed HCIs for autism intervention. The findings revealed a moderate positive effect (g = 0.484) on improving…
Descriptors: Man Machine Systems, Interaction, Intervention, Autism Spectrum Disorders
George Essien; Steven S. Parbanath – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: This paper explores the trends in robot storytelling, its conceptual models, and educational implications. Background: Digital storytelling is the use of digital media elements such as text, images, audio, and video to create and tell a story. A form of digital storytelling using a social robot to do the story presentation is called…
Descriptors: Robotics, Educational Technology, Story Telling, Educational Trends
Xueqing Wu; Rui Li – Journal of Educational Computing Research, 2024
While numerous studies of robot-assisted language learning (RALL) for English-as-a-foreign-language (EFL) learners' language skill development have been done, a comprehensive and theoretically-driven meta-analysis on its effects is still in paucity. To fill the gap, drawing on Activity Theory (AT), this study reported a meta-analysis from 47…
Descriptors: Robotics, Second Language Learning, Second Language Instruction, English (Second Language)
Pusey, Megan; Wong, Kok Wai; Rappa, Natasha Anne – Interactive Learning Environments, 2022
This scoping review summarises the literature on resilience interventions that use interactive technology. Resilience refers to a person's mental ability to adaptively deal with challenging situations and is a key skill for dealing with challenges in life. Types of interactive technology used in resilience interventions included serious video…
Descriptors: Resilience (Psychology), Intervention, Interaction, Technology Uses in Education
Pérez-Vázquez, Elena; Lorenzo, Gonzalo; Lledó, Asunción; Lorenzo-Lledó, Alejandro – Technology, Knowledge and Learning, 2020
Irruption of technologies in the educational context, specifically robotics has meant changes in the use of learning tools for students with ASD. In this sense, the inclusion of robots in intervention with these students allowed to design simpler and more controlled learning environments, adjusted to the needs of these students. From this line of…
Descriptors: Autism, Pervasive Developmental Disorders, Robotics, Intervention
Huijnen, Claire A. G. J.; Lexis, Monique A. S.; Jansens, Rianne; de Witte, Luc P. – Journal of Autism and Developmental Disorders, 2016
The aim of this study was to increase knowledge on therapy and educational objectives professionals work on with children with autism spectrum disorder (ASD) and to identify corresponding state of the art robots. Focus group sessions (n = 9) with ASD professionals (n = 53) from nine organisations were carried out to create an objectives overview,…
Descriptors: Pervasive Developmental Disorders, Autism, Educational Objectives, Children
Diehl, Joshua J.; Schmitt, Lauren M.; Villano, Michael; Crowell, Charles R. – Research in Autism Spectrum Disorders, 2012
We examined peer-reviewed studies in order to understand the current status of empirically based evidence on the clinical applications of robots in the diagnosis and treatment of Autism Spectrum Disorders (ASD). Studies are organized into four broad categories: (a) the response of individuals with ASD to robots or robot-like behavior in comparison…
Descriptors: Feedback (Response), Autism, Pervasive Developmental Disorders, Robotics
Wass, Sam V.; Porayska-Pomsta, Kaska – Autism: The International Journal of Research and Practice, 2014
In this review, we focus on research that has used technology to provide cognitive training--i.e. to improve performance on some measurable aspect of behaviour--in individuals with autism spectrum disorders. We review technology-enhanced interventions that target three different cognitive domains: (a) emotion and face recognition, (b) language and…
Descriptors: Pervasive Developmental Disorders, Autism, Technology Uses in Education, Cognitive Processes