Dominic Heger
Papers
2
Total Citations
19
H-Index
2
About
Dominic Heger is a pioneering researcher at the intersection of affective computing, human-robot interaction, and neural signal processing. His work centers on developing adaptive information systems that enable robots to perceive and respond to human emotional states in real time. Heger’s most notable contributions include the design of an empathic robot that interprets electroencephalography (EEG) data to adjust its behavior, effectively bridging the gap between brain-computer interfaces and socially intelligent machines. His seminal 2011 paper, "An EEG Adaptive Information System for an Empathic Robot," has garnered 13 citations, while its 2010 precursor has accumulated 6 citations, establishing a foundational framework for emotion-aware robotic systems. By integrating EEG-based cognitive state detection with adaptive feedback loops, Heger has advanced the feasibility of robots that can intuitively understand and react to human affective cues—a critical step toward more natural and responsive human-robot collaboration. His work continues to inspire researchers in assistive robotics, neuroergonomics, and human-centered AI, demonstrating how neural data can transform machines from mere tools into empathetic partners.
Research Focus
Key Achievements
Top Papers
- 1An EEG Adaptive Information System for an Empathic Robot13 citations · 2011
- 2An Adaptive Information System for an Empathic Robot Using EEG Data6 citations · 2010