Anxiety and depression are important mental health problems worldwide, and their comorbid state, anxiety-depression comorbidity (ADC) , has greater symptom severity. With the increasing burden of chronic non-communicable diseases, residents’ physical and mental health problems have shown an overlapping trend. The mediating role of mental health literacy (MHL) between physical health and psychological outcomes warrants further investigation. Based on the national survey initiative, this study conducted a large-scale stratified multistage population survey across all districts and counties of Chongqing, southwest China, and included 36,874 permanent residents. Mental health literacy (MHL) was assessed using the National Mental Health Literacy Questionnaire (NMHLQ). Depression and anxiety were screened using the Patient Health Questionnaire-9 (PHQ-9) and the Generalized Anxiety Disorder-7 (GAD-7), respectively. Descriptive analyses were performed to characterize epidemiological features. Multivariable regression analysis was conducted across the three psychological outcome groups of anxiety, depression, and their comorbidity to explore the effects of self-rated health (SRH) and chronic disease on multiple psychological outcomes and the effects after variable adjustment, and subgroup analysis and sensitivity analysis were used to test robustness. The Bootstrap resampling method was used to test the mediating effect, and the standardized path coefficients and effect proportions of each mediation model were calculated. The positive screening rates for anxiety, depression, and ADC in the surveyed area were 2.72% (1004/36874), 4.53% (1672/36874), and 2.11% (777/36,874), respectively. The odds of anxiety, depression, and comorbidity among residents with fair or poor SRH were 2.76 (95% CI 2.40–3.17), 3.31 (95% CI 2.97–3.69), and 2.98 (95% CI 2.55–3.49), respectively. The corresponding odds among residents with chronic disease were 1.40 (95% CI 1.21–1.62), 1.51 (95% CI 1.35–1.70), and 1.41 (95% CI 1.19–1.65), respectively. MHL was negatively associated with the three psychological outcomes. After adjustment for relevant covariates, stratified analysis, and sensitivity analysis, the above associations remained robust. Multivariable logistic regression and multi-group mediation effect analysis showed that MHL had an independent protective role and played a 7–8% partial mediating role in the effects of SRH and chronic disease on mental health outcomes. Poor SRH and chronic disease were associated with anxiety, depression, and their comorbidity among residents, and MHL had an independent protective and partial mediating role in these associations. These findings suggest that residents’ MHL should be improved, and integrated interventions combining chronic disease management with psychological screening should be strengthened.
Deliang Kong, Jiyuan Zhong, Yong Li et al.· Scientific Reports· 0 citations
Water-rock interaction significantly influences the mechanical behavior and failure characteristics of coal masses; however, the underlying mechanisms governing the transition of failure modes from dry to saturated conditions remain insufficiently understood. In this study, uniaxial compression tests combined with particle flow numerical simulations were conducted to investigate the mechanical response, crack evolution, force-chain characteristics, and failure mechanisms of coal specimens under dry and water-saturated conditions. The mesoscale evolution of cracks and force-chain networks was quantitatively characterized to elucidate the intrinsic relationship between internal damage development and macroscopic failure patterns. The results indicate that water saturation markedly deteriorates the mechanical properties of coal, leading to pronounced reductions in compressive strength and elastic modulus while accelerating damage accumulation. Dry specimens predominantly exhibit conjugate shear failure characterized by X-shaped shear bands and relatively large fragmented blocks. In contrast, saturated specimens are dominated by tensile failure, with axial cracks initiating from the specimen base and propagating parallel to the loading direction, resulting in more severe fragmentation and higher crack density. Analysis of crack hotspots and force-chain distributions reveals that macroscopic failure is governed by the evolution, rupture, and reorganization of internal force-chain networks. In dry specimens, strong force chains effectively sustain localized shear stress concentrations, promoting shear crack coalescence. Water-rock interaction weakens inter-particle bonding and frictional resistance, redistributes internal stresses, and disrupts force-chain continuity, thereby facilitating the initiation and propagation of tensile microcracks. The formation of force chains oriented obliquely to the loading direction is identified as an important precursor to tensile failure. These findings provide new insights into the mesoscale mechanisms of water-induced weakening and failure-mode transition in coal and offer a theoretical basis for the stability evaluation and disaster prevention of water-bearing coal engineering.