Author:
Chiyohara Shinya,Furukawa Jun-ichiro,Noda Tomoyuki,Morimoto Jun,Imamizu Hiroshi
Abstract
AbstractSports trainers often grasp and move trainees’ limbs to give instructions on desired movements, and a merit of this passive training is the transferring of instructions via proprioceptive information. However, it remains unclear how passive training affects the proprioceptive system and improves learning. This study examined changes in proprioceptive acuity due to passive training to understand the underlying mechanisms of upper extremity training. Participants passively learned a trajectory of elbow-joint movement as per the instructions of a single-arm upper extremity exoskeleton robot, and the performance of the target movement and proprioceptive acuity were assessed before and after the training. We found that passive training improved both the reproduction performance and proprioceptive acuity. We did not identify a significant transfer of the training effect across arms, suggesting that the learning effect is specific to the joint space. Furthermore, we found a significant improvement in learning performance in another type of movement involving the trained elbow joint. These results suggest that participants form a representation of the target movement in the joint space during the passive training, and intensive use of proprioception improves proprioceptive acuity.
Funder
National Institute of Information and Communications Technology
ImPACT Program
Japan Society for the Promotion of Science
Publisher
Springer Science and Business Media LLC
Reference27 articles.
1. Tuthill, J. C. & Azim, E. Proprioception. Curr. Biol. 28, R194–R203 (2018).
2. Beets, I. A. M. et al. Active versus passive training of a complex bimanual task: Is prescriptive proprioceptive information sufficient for inducing motor learning?. PLoS One 7, 2 (2012).
3. Darainy, M., Vahdat, S. & Ostry, D. J. Perceptual learning in sensorimotor adaptation. J. Neurophysiol. 110, 2152–2162 (2013).
4. Vahdat, S., Darainy, M. & Ostry, D. J. Structure of plasticity in human sensory and motor networks due to perceptual learning. J. Neurosci. 34, 2451–2463 (2014).
5. Lei, Y., Bao, S. & Wang, J. The combined effects of action observation and passive proprioceptive training on adaptive motor learning. Neuroscience 331, 91–98 (2016).
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