Abstract
The role of technology in education and clinical therapy cannot be disregarded. Employing robots and computer-based devices as competent and advanced learning tools for children indicates that there is a role for technology in overcoming certain weaknesses of common therapy and educational procedures. In this paper, we present a new platform for a virtual reality social robot (VR-social robot) which could be used as an auxiliary device or a replacement for real social robots. To support the idea, a VR-robot, based on the real social robot Arash, is designed and developed in the virtual reality environment. “Arash” is a social robot buddy particularly designed and realized to improve learning, educating, entertaining, and clinical therapy for children with chronic disease. The acceptance and eligibility of the actual robot among these children have been previously investigated. In the present study, we investigated the acceptability and eligibility of a virtual model of the Arash robot among twenty children. To have a fair comparison a similar experiment was also performed utilizing the real Arash robot. The experiments were conducted in the form of storytelling. The initial results are promising and suggest that the acceptance of a VR-robot is fairly compatible to the real robot since the performance of the VR-robot did not have significant differences with the performance of the real Arash robot. Thereby, this platform has the potential to be a substitute or an auxiliary solution for the real social robot.
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References
Benitti, F.B.: Exploring the educational potential of robotics in schools: a systematic review. Comput. Educ. 58(3), 978–988 (2012)
Elahi, M.T., et al.: “Xylotism”: a tablet-based application to teach music to children with autism. In: Kheddar, A., et al. (eds.) Social Robotics. LNCS, vol. 10652, pp. 728–738. Springer, Cham (2017). https://doi.org/10.1007/978-3-319-70022-9_72
Taheri, A.R., Meghdari, A., Alemi, M., Pouretemad, H.R.: Clinical interventions of social humanoid robots in the treatment of a pair of high- and low-functioning autistic Iranian twins. Scientia Iranica, Trans. B: Mech. Eng. 25(3), 1197–1214 (2018)
Taheri, A., Meghdari, A., Alemi, M., Pouretemad, H.: Teaching music to children with autism: a social robotics challenge. Int. J. Sci. Iran. Trans. G Soc. Cognit. Eng. (2018). https://doi.org/10.24200/SCI.2017.4608
Striepe, H., Lugrin, B.: There once was a robot storyteller: measuring the effects of emotion and non-verbal behaviour. In: Kheddar, A., et al. (eds.) Social Robotics. LNCS, vol. 10652, pp. 126–136. Springer, Cham (2017). https://doi.org/10.1007/978-3-319-70022-9_13
Alemi, M., Ghanbarzadeh, A., Meghdari, A., Moghadam, L.J.: Clinical application of a humanoid robot in pediatric cancer interventions. Int. J. Soc. Robot. 8(5), 743–759 (2016)
Meghdari, A., et al.: Arash: a social robot buddy to support children with cancer in a hospital environment. Proc. Inst. Mech. Eng. Part H: J. Eng. Med. 232(6), 605–618 (2018)
Meghdari, A., Shariati, A., Alemi, M., Amoozandeh, A., Khamooshi, M., Mozafari, B.: Design performance characteristics of a social robot companion “Arash” for pediatric hospitals. Int. J. Humanoid Robot. 15, 1850019 (2018)
Meghdari, A., Alemi, M., Khamooshi, M., Amoozandeh, A., Shariati, A., Mozafari, B.: Conceptual design of a social robot for pediatric hospitals. In: 4th International Conference Robotics and Mechatronics (ICROM), pp. 566–571. IEEE (2016)
Jensen, L., Konradsen, F.: A review of the use of virtual reality head-mounted displays in education and training. Educ. Inf. Technol. 23(4), 1515–1529 (2016)
Shahab, M., et al.: Social virtual reality robot (V2R): a novel concept for education and rehabilitation of children with autism. In: 2017 5th RSI International Conference on Robotics and Mechatronics (ICRoM), pp. 82–87. IEEE (2017)
Bartneck, C., Kulić, D., Croft, E., Zoghbi, S.: Measurement instruments for the anthropomorphism, animacy, likeability, perceived intelligence, and perceived safety of robots. Int. J. Soc. Robot. 1(1), 71–81 (2009)
Bradley, M.M., Lang, P.J.: Measuring emotion: the self-assessment manikin and the semantic differential. J. Behav. Ther. Exp. Psychiatry 25(1), 49–59 (1994)
Appel, M., Gnambs, T., Richter, T., et al.: The transportation scale—short form (TS-SF). Media Psychol. 18(2), 243–266 (2015)
Green, M.C., Brock, T.C.: The role of transportation in the persuasiveness of public narratives. J. Pers. Soc. Psychol. 79(5), 701 (2000)
Read, J.C., MacFarlane, S.J., Casey, C.: Endurability, engagement and expectations: measuring children’s fun. In: Interaction Design and Children, vol. 2, pp. 1–23. Shaker Publishing, Eindhoven (2002)
Acknowledgements
This project is supported and funded by the Iranian National Science Foundation-INSF (http://en.insf.org/) and the Office of the Vice-President in Science and Technology. We also thank Mrs. S. L. Holderread for the English editing of the paper. Moreover, Mr. Alireza Esfandbod is appreciated for his effective collaboration in the virtual robot modeling.
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Shariati, A., Shahab, M., Meghdari, A., Amoozandeh Nobaveh, A., Rafatnejad, R., Mozafari, B. (2018). Virtual Reality Social Robot Platform: A Case Study on Arash Social Robot. In: Ge, S., et al. Social Robotics. ICSR 2018. Lecture Notes in Computer Science(), vol 11357. Springer, Cham. https://doi.org/10.1007/978-3-030-05204-1_54
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