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Postural Ergonomic Risk and Biomechanical Determinants in Fish Processing Tasks: A REBA-Based Multivariate Analysis

  • Rusber Alberto Risco-Ojeda
  • , Cesar Moreno-Rojo
  • , Ruben Adrián Figueroa-León
  • , Saúl Ricardo Chuqui-Diestra
  • , Juan Carlos Ponce-Ramirez
  • , Arlette Guiuliana Villacresis-Huashuayo
  • , Janet Verónica Saavedra-Vera
  • , Luis Alberto Segura-Terrones
  • , Segundo José Palacios-Guarniz
  • , Edgar Virgilio Bedoya-Justo
  • , Abel José Rodríguez-Yparraguirre
  • , Carlos Diego Rodríguez-Yparraguirre
  • Universidad Nacional del Santa
  • Universidad Tecnológica del Perú
  • Universidad Nacional de San Cristóbal de Huamanga
  • Universidad César Vallejo
  • Universidad Nacional de Trujillo
  • Universidad Nacional de Moquegua

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Musculoskeletal disorders represent one of the most frequent occupational health problems in labour-intensive industries, particularly in fish processing, where repetitive tasks and prolonged postures are common. The objective was to determine the level of ergonomic risk by applying the Rapid Entire Body Assessment (REBA) method and based on the results, to formulate recommendations aimed at preventing musculoskeletal disorders and improving preventive management within the organization. The assessment included 30 workers distributed across three operational workstations, where the overall average REBA score was 8.60 ± 1.65 (range: 6–12), indicating a predominantly high level of ergonomic risk. In categorical terms, 60.0% of the workers were classified as high risk, 13.3% as very high risk, and 26.7% as medium risk, while none reached negligible or low risk levels. Significant differences were observed between workstations (Kruskal–Wallis H = 16.72, p < 0.001, ε2 = 0.545), with the nobbing stage exhibiting the highest biomechanical load (mean REBA = 10.38 ± 1.06). It is concluded that ergonomic risk is structurally integrated into the operational design of the evaluated production system; therefore, ergonomic interventions focused on redesigning workstations, adjusting height, and configuring tasks are recommended to reduce biomechanical exposure and strengthen the organization’s preventive occupational safety framework.

Original languageEnglish
Article number74
JournalSafety
Volume12
Issue number3
DOIs
StatePublished - Jun 2026

Bibliographical note

Publisher Copyright:
© 2026 by the authors.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • industrial ergonomics
  • musculoskeletal disorders
  • occupational health
  • repetitive movements
  • workplace safety

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