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Workers’ Injury Risks Focusing on Body Parts in Reinforced Concrete Construction Projects

Bibliographic Data

ID15468436
AuthorsJiseon Lim (0000-0002-1088-0334, Incheon National University), Jaehong Cho (0009-0002-0746-4169, Incheon National University), Jeonghwan Kim (0000-0002-1092-9388, Korea National University of Transportation), Sanghyeok Kang (0000-0002-5510-8102, Incheon National University, corresponding author)
Year2024
Volume21
Issue12
Pages1655-1655
Publication date2024-12-11
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph21121655
PMID39767494
OpenAlexW4405284897
LanguageEN
References cited18

This study addresses occupational safety in reinforced concrete construction, an area marked by high accident rates and significant worker injury risks. By focusing on activity-body part (A-BP) combinations, this research introduces a novel framework for quantifying injury risks across construction activities. Reinforced concrete construction tasks are categorized into ten specific activities within three major work types: rebar work, formwork, and concrete placement. These are further analyzed concerning six critical body parts frequently injured on-site: head/face, arm/shoulder, wrist/hand, torso, leg/pelvis, and foot/ankle. Using data from 2283 construction accident reports and expert surveys, the probability and severity of injuries for each A-BP element were calculated. Probability scores were derived from actual incident data, while severity scores were determined via expert evaluations, considering injury impact and the required recovery time. To ensure precision and comparability, scores were standardized across scales, enabling a final risk assessment for each A-BP. Results identified that wrist and hand injuries during rebar work activities, particularly cutting and shaping, exhibited the highest risk, underscoring the need for focused protective measures. This study contributes to construction safety management by providing detailed insights into injury risk based on activity-body part interactions, offering safety managers data-driven recommendations for tailored protective equipment, enhanced training, and preventive protocols. This research framework not only helps optimize safety interventions on conventional construction sites but also establishes a basis for future studies aimed at adapting these strategies to evolving construction methods

Comparability · Computer security · Construction site safety · Environmental health · Forensic engineering · Injury prevention · Occupational safety and health · Poison control · Risk analysis (engineering · Risk assessment · Structural engineering · Work (physics · Computer Science · Engineering · Human Factors and Ergonomics · Medicine · Occupational Health and Safety Research · Quality and Safety in Healthcare · Risk and Safety Analysis

  • Work-Related Injuries among Insured Construction Workers Presenting to a Swiss Adult Emergency Department

    Open Access•Ralf Dethlefsen, Luisa Orlik et al.•International Journal of…•2022

Citation velocityhistorical
Highly citedNo

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