Social facilitation effects of virtual humans S Park, R Catrambone Human factors 49 (6), 1054-1060, 2007 | 155 | 2007 |
Designing Vyo, a robotic Smart Home assistant: Bridging the gap between device and social agent M Luria, G Hoffman, B Megidish, O Zuckerman, S Park 2016 25th IEEE International Symposium on Robot and Human Interactive …, 2016 | 66 | 2016 |
Individual’s social perception of virtual avatars embodied with their habitual facial expressions and facial appearance S Park, SP Kim, M Whang Sensors 21 (17), 5986, 2021 | 63 | 2021 |
Empathy in human–robot interaction: Designing for social robots S Park, M Whang International journal of environmental research and public health 19 (3), 1889, 2022 | 55 | 2022 |
The essence of enjoyable experiences: The human needs: A psychological needs-driven experience design approach J Kim, S Park, M Hassenzahl, K Eckoldt Design, User Experience, and Usability. Theory, Methods, Tools and Practice …, 2011 | 35 | 2011 |
Users' perception of empathic expressions by an advanced intelligent system J Urakami, BA Moore, S Sutthithatip, S Park Proceedings of the 7th international conference on human-agent interaction …, 2019 | 26 | 2019 |
Understanding acceptance of high technology products: 50 years of research KE Caine, M O'Brien, S Park, WA Rogers, AD Fisk, K Van Ittersum, ... Proceedings of the Human Factors and Ergonomics Society Annual Meeting 50 …, 2006 | 25 | 2006 |
Acceptance of computer technology: Understanding the user and the organizational characteristics S Park, MA O'Brien, KE Caine, WA Rogers, AD Fisk, KV Ittersum, M Capar, ... Proceedings of the human factors and ergonomics society annual meeting 50 …, 2006 | 25 | 2006 |
Significant measures of gaze and pupil movement for evaluating empathy between viewers and digital content J Zhang, S Park, A Cho, M Whang Sensors 22 (5), 1700, 2022 | 14 | 2022 |
Social responses to virtual humans: the effect of human-like characteristics S Park, R Catrambone Applied Sciences 11 (16), 7214, 2021 | 13* | 2021 |
How humans develop trust in communication robots: A phased model based on interpersonal trust R Ogawa, S Park, H Umemuro 2019 14th ACM/IEEE International Conference on Human-Robot Interaction (HRI …, 2019 | 10 | 2019 |
The analysis of emotion authenticity based on facial micromovements S Park, SW Lee, M Whang Sensors 21 (13), 4616, 2021 | 9 | 2021 |
Recognition of emotion by brain connectivity and eye movement J Zhang, S Park, A Cho, M Whang Sensors 22 (18), 6736, 2022 | 8 | 2022 |
Human factors consideration for the design of collaborative machine assistants S Park, AD Fisk, WA Rogers Handbook of ambient intelligence and smart environments, 961-984, 2010 | 8 | 2010 |
Understanding technology acceptance: Phase 2–Identifying and validating the metrics & preliminary testing of a quantitative model K Van Ittersum, WA Rogers, M Capar, S Park, MA O’Brien, KE Caine, ... Georgia Institute of Technology, 2006 | 7 | 2006 |
Non-Contact Measurement of Empathy Based on Micro-Movement Synchronization A Cho, S Park, H Lee, M Whang Sensors 21 (23), 7818, 2021 | 6 | 2021 |
Understanding the social relationship between humans and virtual humans S Park, R Catrambone Human-Computer Interaction. HCI Intelligent Multimodal Interaction …, 2007 | 6 | 2007 |
Recognition of Empathy from Synchronization between Brain Activity and Eye Movement J Zhang, S Park, A Cho, M Whang Sensors 23 (11), 5162, 2023 | 4 | 2023 |
The evaluation of emotional intelligence by the analysis of heart rate variability G Lee, S Park, M Whang Sensors 23 (5), 2839, 2023 | 4 | 2023 |
Empathic Responses of Behavioral-Synchronization in Human-Agent Interaction S Park, S Park, M Whang Computers, Materials & Continua 71 (2), 3761-3784, 2021 | 4 | 2021 |