Background: Women in nursing professions are at high risk for developing varicose veins as it requires physical work and prolonged standing. The aim of the study is to estimate the current prevalence of varicose veins among nurses at Dhulikhel Hospital and assess its risk factors. Methods: A cross sectional study was carried out among 181 female nurses from different clinical settings of Dhulikhel Hospital. A structured questionnaire was administered to gather the demographic, work related and medical history information. The participants underwent Doppler ultrasound for varicose veins confirmation. Varicose veins was defined as Doppler finding of reflux or vein diameter equal or greater than 5 mm. Results: A total of 181 nurses participated in this study and 83 (46%) had varicose veins. The mean standing time was 4.28 (0.8) hours /day, mean sitting time was 1.28 (0.6) hours/day, mean walking time was 2.37 (0.8) hours/day. In the adjusted model the odds of having varicose veins was 27 times greater with every 1 hour increase in standing time per day (adjusted OR: 27.44; 95% CI 4.09-180.77; p-value <0.00). Conclusions: Varicose veins was prevalent among nurses' at Dhulikhel Hospital. Prolonged standing was found to be a significant factor for varicose veins.
Carbon steel is currently being considered as a candidate canister material for use in a deep geological repository of radioactive waste. Assessment of canister material corrosion through microbial activity is an important part of the safety assessment for the final repository. The aim of study was to compare and characterise the corrosion behaviour of carbon steel under sterile and non-sterile anaerobic conditions in natural groundwater containing sulphate-reducing bacteria (SRB). A molecularbiological approach was used to determine the presence and abundance changes of relevant bacterial groups. Carbon steel corrosion rates were higher in the presence of SRB compared with sterile control. EIS described the evolution of three time-constants under non-sterile conditions, while scanning electron microscopy confirmed that the carbon steel surface was covered with a two-layer biofilm. Molecular-biological analysis of the water and biofilm indicated the dominance of SRB, with Desulfomicrobium and Desulfovibrio species prevalent.
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