To establish a structural equation model of lower back pain and its risk factors in occupational population in China based on a large-sample occupational epidemiological survey and structural equation analysis, so as to lay the foundation for the prevention of this disease. A total of 73497 occupational epidemiological cases were selected from June 2018 to December 2023 using the Chinese version of the Musculoskeletal Disorders Electronic Questionnaire. The results were analyzed using ergonomic hazard factors and their risk source classification criteria. Confirmatory factor analysis was then applied to extract individual factors, work organization, working postures, work types, muscle fatigue, and lower back pain. These factors were subsequently classified into six categories and structural equation model was established. The main structural reliability and validity indexes of the structural equation model of lower back pain and its adverse ergonomic factors after adjustment were basically up to standard[goodness of fit index (GFI) was 0.956, the adjusted goodness of fit index (AGFI) was 0.944, the root mean square error of approximation (RMSEA) was 0.043, the normed fit index (NFI) was 0.922, the comparative fit index (CFI) was 0.923, and the Tucker-Lewis index (TLI) was 0.908], and the model fit was good. There were correlations among four exogenous latent variables: individual factors, work organization, working postures and work types. Among them, individual factors had a weak negative correlation with the three exogenous potential variables of work organization, working postures and work types (=-0.30, -0.11, -0.18), and work organization had a moderate positive correlation with working postures and work types (=0.49, 0.55). There was a strong positive correlation between work types and working postures (=0.72). The direct path coefficients of individual factors, working postures and muscle fatigue were 0.07, 0.11 and 0.40, respectively. The direct path coefficients of work types were -0.07. There was an indirect path mediated by muscle fatigue between work types, working postures and work organization and lower back pain, and the indirect path coefficients were: work types-muscle fatigue-lower back pain (0.15), working postures-muscle fatigue-lower back pain (-0.04) and work organization-muscle fatigue-lower back pain (0.27) . When carrying out the prevention and control of lower back pain, the pathogenesis of lower back pain induced by workers' muscle fatigue caused by work organization, working postures, and work types factors should be comprehensively considered, so as to provide a theoretical reference for improving the prevention and control level of lower back pain.
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http://dx.doi.org/10.3760/cma.j.cn121094-20240422-00177 | DOI Listing |
PLoS One
January 2025
Department of Human Kinetics, Université du Québec à Trois-Rivières, Trois-Rivières, Québec, Canada.
Demographic aging and extended working lives have prompted interest in the physiological changes that occur with age, particularly in the lumbar spine. Age-related declines in muscle quality and intervertebral disc alterations may reduce muscular endurance, strength, and postural stability, potentially increasing the risk of musculoskeletal injuries in older workers. As experienced workers play an important role in addressing labor shortages, understanding the impact of age-related physiological changes on the biomechanical properties of the lumbar spine is key to ensure safe and sustainable employment for aging individuals.
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December 2024
Department of Neurosurgery, University of Fukui, Fukui, JPN.
Background Prior to using the exoscope, we speculated that it represented an intermediate tool between a loupe and a microscope and had concerns about its visibility of deep, fine structures. Objective To evaluate the depths of meningioma for which the exoscope was suitable, and to clarify its disadvantages in meningioma resection. Methods Findings of consecutive meningioma surgeries using a 4K three-dimensional (3D) exoscope over a one-year period were evaluated for visibility of the surgical field, comfort of the surgeon's arm posture, the surgeon's head orientation, and perception of the image delay, accounting for the depth of the tumor.
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December 2024
Department of Orthopedic Surgery, Fujimi-Kogen Hospital, Fujimi-Kogen Medical Center, Fujimi, JPN.
This study reports on an extremely rare case of non-traumatic atlantoaxial rotatory fixation (AARF) in an adult. Although there are numerous reports on traumatic AARF in adults, those on non-traumatic AARFs are limited. We present the case of a 25-year-old woman who developed neck pain with a limited range of motion (ROM) that began upon waking without any particular inducement.
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January 2025
Department of Orthopaedic Surgery, Fukushima Medical University School of Medicine, Fukushima, JPN.
Purpose: Worsening sagittal alignment of the spine, particularly kyphosis, may cause difficulty in assuming a supine position, restricting sleeping posture and movement and potentially leading to sleep disturbances. However, no studies have explored the relationship between sagittal spinal alignment and sleep disturbance. This study aimed to clarify the relationship between sagittal spinal alignment and sleep disturbance.
View Article and Find Full Text PDFSci Rep
January 2025
School of Physical Education, Shanghai University of Sport, 650 Qingyuanhuan Road, Yangpu District, Shanghai, China.
The association between physical function and working memory in older adults is moderated by structural dimensions of physical function, but it is unclear which structural dimensions of physical function are associated with working memory in healthy older adults. The purpose of this study was to construct the structural dimensions of physical function and assess their associations with working memory in adults aged 60-74 years to provide potential targets for earlier identification and interventions of physical function and working memory decline in older adults. To this end, data from 664 to 589 eligible older adults were used for factor analysis and structural equation modeling, respectively.
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