Gender and body height discriminate spinal movement patterns during lifting and lowering tasks.

This study aimed to explore the relationships between gender, anthropometrics, and spinal movement patterns (SMP) during lifting and lowering tasks. Thirty adults lifted and lowered a 15 kg-box using a freestyle, squat, and stoop technique. A stepwise segmentation approach, along with the timing of...

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Detalles Bibliográficos
Publicado en:Ergonomics Vol. 69; no. 6; pp. 994 - 1007
Autores principales: Nematimoez, Mehdi, Bangerter, Christian, Von Arx, Michael, Liechti, Melanie, Schmid, Stefan
Formato: equations & formulas research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Jun2026
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:This study aimed to explore the relationships between gender, anthropometrics, and spinal movement patterns (SMP) during lifting and lowering tasks. Thirty adults lifted and lowered a 15 kg-box using a freestyle, squat, and stoop technique. A stepwise segmentation approach, along with the timing of main inflection points of relative angles, was used to distinguish various spinal movement patterns. Temporal multi-segmental interactions were categorised, and their frequencies were analysed based on segments and lifting techniques. SMP's demonstrated varying associations with gender and anthropometric factors during lifting and lowering phases. Notably, during stoop lifting, females tended towards a bottom-up pattern, contrasting with males' preference for a simultaneous pattern. Cluster analysis highlighted the bottom-up pattern in the thoracic spine as the most prominent discriminating factor among females. This SMP categorisation method holds potential for designing tailored manual material handling strategies and re-evaluating therapeutic and exercise programs in occupational, clinical, and sport contexts. Practitioner Summary: There is little information about multi-segmental spinal movement pattern and its relation to individual characteristics during lifting and lowering. Based on the results of this experimental study, gender, height, technique and their combinations could influence spinal movement pattern and be used for designing more subject-specific exercise programs in ergonomic settings.