Author:
Regmi Sambad,Burns Devin,Song Yun Seong
Abstract
AbstractHumans can physically interact with other humans adeptly. Some overground interaction tasks, such as guiding a partner across a room, occur without visual and verbal communication, which suggests that the information exchanges occur through sensing movements and forces. To understand the process of motor communication during overground physical interaction, we hypothesized that humans modulate the mechanical properties of their arms for increased awareness and sensitivity to ongoing interaction. For this, we used an overground interactive robot to guide a human partner across one of three randomly chosen paths while occasionally providing force perturbations to measure the arm stiffness. We observed that the arm stiffness was lower at instants when the robot’s upcoming trajectory was unknown compared to instants when it was predicable - the first evidence of arm stiffness modulation for better motor communication during overground physical interaction.
Funder
National Science Foundation
Publisher
Springer Science and Business Media LLC
Reference36 articles.
1. Franklin, D. W., So, U., Burdet, E. & Kawato, M. Visual feedback is not necessary for the learning of novel dynamics. PLoS ONE 2, e1336 (2007).
2. Batcho, C., Gagné, M., Bouyer, L., Roy, J. & Mercier, C. Impact of online visual feedback on motor acquisition and retention when learning to reach in a force field. Neuroscience 337, 267–275 (2016).
3. Reed, K. B., Peshkin, M., Hartmann, M. J., Colgate, J. E. & Patton, J. Kinesthetic interaction. In 9th International Conference on Rehabilitation Robotics, 2005. ICORR 2005, 569–574 (IEEE, 2005).
4. Takagi, A., Ganesh, G., Yoshioka, T., Kawato, M. & Burdet, E. Physically interacting individuals estimate the partner’s goal to enhance their movements. Nat. Hum. Behav. 1, 1–6 (2017).
5. Feth, D., Groten, R., Peer, A., Hirche, S. & Buss, M. Performance related energy exchange in haptic human-human interaction in a shared virtual object manipulation task. In World Haptics 2009-Third Joint EuroHaptics conference and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems, 338–343 (IEEE, 2009).
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