Passionate visitor of artificial worlds and curious explorer of emerging digital intelligence, Dr. Davide De Tommaso is a computer engineer with a PhD in Cognitive Robotics and Interactive Technologies. With over a decade of experience, he specializes in human-robot interaction and artificial intelligence, focusing on applications in healthcare, education, and services. Currently, he serves as a technologist within the Social Cognition in Human-Robot Interaction research group at the Italian Institute of Technology, contributing to innovative interdisciplinary research and impactful technological advancements.
Phone
+39 010 2897 245
Research center
CHT@Erzelli
Biografia
All Publications
2026
Ari I., Wozniak M., De Tommaso D., Wykowska A.
Causing a robot to display happy but not sad facial expression leads to sensory attenuation
Social Cognitive and Affective Neuroscience, vol. 21, (no. 1)
Article
Journal
2026
Ari I., Wozniak M., De Tommaso D., Wykowska A.
Causing a robot to display happy but not sad facial expression leads to sensory attenuation
Social Cognitive Affective Neuroscience, vol. 21, (no. 1)
Article
Journal
2026
Marchesi S., Ciupinska K., De Tommaso D., Wykowska A.
Correction: Stability of value perception: minimal influence of framing on moral attributions to a humanoid robot (Scientific Reports, (2026), 16, 1, (1561), 10.1038/s41598-025-28831-8)
Scientific Reports, vol. 16, (no. 1)
Erratum
Journal
2026
Gao Q., Woziak M., Ari I., Migno G., De Tommaso D., Wykowska A.
Dissociating subjective and neural markers of joint agency: Robot’s expression of intentionality enhances sensory attenuation but reduces subjective joint agency
4th international conference of the European Society for Cognitive and Affective Neuroscience (ESCAN)
Poster
Conference
2026
Foglino C., Siri G., De Tommaso D., Wykowska A.
Embodied robot gaze cues enhance visual working memory more than symbolic arrows
European Society for Cognitive and Affective Neuroscience (ESCAN)
Abstract Report
Conference
Colleagues of Social cognition in human-robot interaction