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◆ Ergonomics2026-08-11

Trajectories of short-term operator adaptation in cobot-assisted disassembly: a within-subject multimodal analysis.

Wonjoon Kim

原始摘要(英文原文)· Original abstract
Collaborative robots are increasingly deployed in Industry 5.0 disassembly cells, yet how operators adapt across repeated cobot interactions is rarely characterised multimodally. The Day-2 axis of the MultiPhysio-HRC corpus was analysed: forty-two participants performed up to five repetitions each of a Fanuc CRX-20 cobot-assisted disassembly and a matched manual control, with 12-channel dry EEG, ECG, EDA, EMG and respiration recorded throughout; primary inference was based on the paired-analysis cohort (n = 39, ≥ 3 repetitions per context). Mixed-effects models and per-subject physiological regressions revealed a within-subject adaptation signature confined to cobot: state anxiety, workload, frustration and arousal declined while dominance grew, whereas manual produced flat or worsening trajectories. Repeated-measures analyses showed stronger aggregate physiological-state coupling during cobot than manual work (subject-level permutation p ≈ .001), although no individual channel showed a reliable context-specific effect. Cross-subject prediction of individual adaptation slopes was largely unsuccessful.
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Trajectories of short-term operator adaptation in cobot-assisted disassembly: a within-subject multimodal analysis. — 科研速览 Science Skim