6533b829fe1ef96bd128a3ab

RESEARCH PRODUCT

Effects of kinematics constraints on hand trajectory during whole-body lifting tasks

Stéphane VieilledentThierry PozzoY. KerlirzinGilles DietrichGilles Dietrich

subject

AdultMaleLiftingHand StrengthMovement (music)MovementGeneral NeurosciencePostureBody movementKinematicsHandSagittal planeBiomechanical PhenomenaLift (force)medicine.anatomical_structureControl theoryTrajectorymedicineHumansCenter of massInvariant (mathematics)Mathematics

description

Trajectories of the hands and whole-body center of mass were studied during whole-body lifting tasks. The movements of different parts of the body were monitored with the ELITE system. Subjects were instructed to lift to shoulder height an object placed at one of two distances (5-45 cm) before them on the floor. The lifts were performed both with and without kinematics constraints (i.e. to produce a straight hand trajectory while lifting, and to lift without any instructions, respectively). Hand trajectories were roughly straight when performed under the constrained condition, but curved when performed without instruction. Hand velocity curves showed bell-shaped profiles. In both groups, body centers of mass (whole-body, upper and lower part) were calculated and their trajectories showed invariant sagittal displacements. These results support the idea that movement contributes to postural control and, reciprocally, that whole-body center of mass is a robust and controlled variable which plays an important role in hand trajectory formation.

https://doi.org/10.1016/s0304-3940(99)00843-5