| 2019 | HCI | Design Approach for Investigating Multimodal Communication in Dismounted Soldier-Robot Interaction. | Daniel J. Barber, Rhyse Bendell |
| 2019 | HCI | Spatial Ability in Military Human-Robot Interaction: A State-of-the-Art Assessment. | Maartje Hidalgo, Lauren Reinerman-Jones, Daniel J. Barber |
| 2018 | HCI | Assessing Multimodal Interactions with Mixed-Initiative Teams. | Daniel J. Barber |
| 2017 | HCI | Feasibility of Wearable Fitness Trackers for Adapting Multimodal Communication. | Daniel J. Barber, Austin Carter, Jonathan Harris, Lauren Reinerman-Jones |
| 2016 | HCI | A Proposed Approach for Determining the Influence of Multimodal Robot-of-Human Transparency Information on Human-Agent Teams. | Shan G. Lakhmani, Julian Abich IV, Daniel J. Barber, Jessie Y. C. Chen |
| 2016 | HCI | Augmenting Robot Behaviors Using Physiological Measures of Workload State. | Grace Teo, Lauren Reinerman-Jones, Gerald Matthews, Daniel J. Barber, Jonathan Harris, Irwin Hudson |
| 2015 | HCI | Experimental Environments for Dismounted Human-Robot Multimodal Communications. | Julian Abich IV, Daniel J. Barber, Lauren Reinerman-Jones |
| 2015 | HRI | Achieving the Vision of Effective Soldier-Robot Teaming: Recent Work in Multimodal Communication. | Susan G. Hill, Daniel J. Barber, Arthur W. Evans III |
| 2014 | HCI | Development of a Squad Level Vocabulary for Human-Robot Interaction. | Daniel J. Barber, Ryan W. Wohleber, Avonie Parchment, Florian Jentsch, Linda Elliott |
| 2014 | HCI | Recommended Considerations for Human-Robot Interaction Communication Requirements. | Stephanie J. Lackey, Daniel J. Barber, Sushunova G. Martinez |
| 2014 | WSC | Immersion, presence, and flow in robot-aided isr simulation-based training. | Stephanie J. Lackey, Crystal S. Maraj, Daniel J. Barber |
| 2013 | HRI | Human-agent teaming for robot management in multitasking environments. | Jessie Y. C. Chen, Stephanie A. Quinn, Julia L. Wright, Daniel J. Barber, David Adams, Michael J. Barnes |
| 2011 | HCI | Distributed Logging and Synchronization of Physiological and Performance Measures to Support Adaptive Automation Strategies. | Daniel J. Barber, Irwin Hudson |
| 2011 | HCI | Augmenting Robot Behaviors Using Physiological Measures. | Daniel J. Barber, Lauren Reinerman-Jones, Stephanie J. Lackey, Irwin Hudson |
| 2011 | HCI | Use of Neurophysiological Metrics within a Real and Virtual Perceptual Skills Task to Determine Optimal Simulation Fidelity Requirements. | Jack Maxwell Vice, Anna Skinner, Chris Berka, Lauren Reinerman-Jones, Daniel J. Barber, Nicholas Pojman, Veasna Tan, Marc M. Sebrechts, Corinna E. Lathan |
| 2009 | HCI | Impact of Automation and Task Load on Unmanned System Operator's Eye Movement Patterns. | Cali M. Fidopiastis, Julie M. Drexler, Daniel J. Barber, Keryl Cosenzo, Michael J. Barnes, Jessie Y. C. Chen, Denise M. Nicholson |