Motor Control and Adaptation Open access Peer reviewed

Trajectory elevation in reach-to-grasp movements under increased arm weight and repeated trials

Yoshihiro Itaguchi, Luna Ando

Experimental Brain Research | Aug 13, 2026

Abstract

Abstract

This study examined how three-dimensional upper-limb movement trajectories are modulated by changes in gravitational load. We hypothesized that individuals adopt a trajectory elevation strategy in reach-to-grasp movements performed on a desk to compensate for increased movement variability arising from motor noise. To increase motor demands and create conditions under which trial-related fatigue effects could emerge, we manipulated arm weight and used an extended repeated-trial protocol. Participants completed 400 reach-to-grasp trials under three weight conditions (0 g, 200 g, and 400 g), with weights applied to the forearm during the middle 300 trials in the 200 g and 400 g conditions. From the first weighted block-when substantial muscle fatigue was unlikely to have developed-maximum trajectory height was greater in the weighted conditions than in the 0 g condition. Across trials, trajectory height gradually decreased in the 0 g and 200 g conditions, whereas a slight increase was observed in the 400 g condition. In the 400 g condition, trajectory elevation across trials was positively correlated with trajectory variability in later trials. These findings are consistent with the hypothesis that trajectory elevation may serve as a strategy to mitigate detrimental effects on task performance caused by fluctuations in motor output, whether arising from added weight or trial-related fatigue effects. Additionally, exploratory analyses examined the effects of within-day repeated practice on aperture control during reach-to-grasp movements.

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Researchers on this paper

Yoshihiro Itaguchi

first | Shizuoka University | ORCID 0000-0002-2033-2171

Luna Ando

last | Shizuoka University

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Citation

BibTeX

@article{Itaguchi2026Trajectory,
  title = {Trajectory elevation in reach-to-grasp movements under increased arm weight and repeated trials},
  author = {Yoshihiro Itaguchi and Luna Ando},
  journal = {Experimental Brain Research},
  year = {2026},
  doi = {10.31234/osf.io/wjrxt_v1},
  url = {https://doi.org/10.1007/s00221-026-07376-w}
}

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