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Updated: Aug 5, 2026

Using a Split-belt Treadmill to Evaluate Generalization of Human Locomotor Adaptation
Published on: August 23, 2017
The role of trust in psychophysiological adaptation during split-belt treadmill training: a multimodal study
Kangjie Zheng1, Cenwei Li1, Siyu Yang1
1School of Automation and Intelligent Manufacturing, Southern University of Science and Technology, Shenzhen, China.
Abstract:
Trust is a key factor in motor learning, but its psychophysiological correlates remain poorly understood. This study examined how trust relates to neural, muscular, and behavioural adaptation during split-belt treadmill training. Twenty-five healthy adults (12 males, 13 females) underwent gait training with unilateral knee/ankle restrictions and weight-bearing. Electroencephalographic, electromyographic, and inertial signals, gait kinematics, and subjective trust were recorded. Variance decomposition characterised variability across signals, and multi-block partial least squares (MB-PLS) extracted latent components linking signals to trust. These analyses identified three distinct adaptation patterns combining neural, muscular, postural, and gait responses. Patterns marked by efficient neural-motor coordination and stable gait were positively associated with trust. A compensatory pattern reflecting sensorimotor conflict was negatively associated, and pattern prevalence shifted across training targets. Trust is embedded in neuromuscular adaptation signatures, supporting trust-aware rehabilitation robots and exoskeletons inferring confidence from multimodal sensing.
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