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Study on the effect of occupational exposure on hypertension of steelworkers based on Lasso-Logistic regression model.

Public Health

December 2024

Department of Epidemiology and Health Statistics, School of Public Health, North China University of Science and Technology, No. 21 Bohai Avenue, Caofeidian New Town, Tangshan, 063210, China; Hebei Key Laboratory of Coal Health and Safety, School of Public Health, North China University of Science and Technology, No. 21 Bohai Avenue, Caofeidian New Town, Tangshan, 063210, China. Electronic address:

Objectives: This study aimed to use a stable and predictive method: Lasso regression model to analyze hypertension's influencing factors and explore the interactions between occupational exposures.

Study Design: This has been a nested case-control study.

Methods: The case group consisted of 959 patients with high blood pressure found during the study.

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Introduction: The aviation occupational environment may expose a developing fetus to intermittent hypoxia, high gravitational force, toxic materials, loud noise, high frequency vibrations, and galactic cosmic radiation. These exposures in animal models are associated with adverse neonatal outcomes. We sought to investigate whether a maternal military aviation career was associated with adverse neonatal health outcomes.

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Objective: This study aimed to attenuate cochlear inflammation following noise-induced hearing loss by targeting IL-1. We evaluated the effectiveness of IL-1 inhibition through auditory and histological assessments in an animal model.

Study Design: Experimental animal study.

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Noise pollution is defined as any disturbing or unwanted sound that disrupts or harms human health or wildlife. Noise pollution can have profound effects on both human health and the environment. For humans, exposure to excessive noise levels has been linked to a range of health issues, including hearing damage, stress, and sleep disturbances.

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Development of industry in the modern world, the number of individuals working in noisy environments is increasing with each passing day. Noise causes an increase in the incidence of cardioembolic events, yet the relevant underlying pathophysiology remains unclear. In this study, we aimed to investigate the relationship between signal peptide and complement C1r/C1s, Uegf, and Bmp1-epidermal growth factor domain-containing protein-1 (SCUBE-1) in the pathophysiology of cardioembolic events in individuals exposed to noisy environments.

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