References
- 1Mehrifar Y, Zeverdegani SK, Faraji M and Rismanchian M. Risk assessment of welders exposure to the rreleased contaminated gases in different types of welding processes in a steel Industry. Health Scope; 2018. DOI: 10.5812/jhealthscope.58267
- 2Sajedifar J, Kokabi AH, Dehghan SF, et al. Evaluation of operational parameters role on the emission of fumes. Industrial health. 2018; 56: 198–206. DOI: 10.2486/indhealth.2017-0155
- 3Meo SA and Al-Khlaiwi T. Health hazards of welding fumes. Saudi Medical Journal. 2003; 24: 1176–1182.
- 4Popović O, Prokić-Cvetković R, Burzić M, Lukić U and Beljić B. Fume and gas emission during arc welding: Hazards and recommendation. Renewable and Sustainable Energy Reviews. 2014; 37: 509–516. DOI: 10.1016/j.rser.2014.05.076
- 5Karimi Zeverdegani S, Mehrifar Y, Faraji M and Rismanchian M. Occupational exposure to welding gases during three welding processes and risk assessment by SQRCA method. Journal of Occupational Health and Epidemiology. 2017; 6: 144–149. DOI: 10.29252/johe.6.3.144
- 6Rahmani A, Golbabaei F, Dehghan SF, Mazlomi A and Akbarzadeh A. Assessment of the effect of welding fumes on welders’ cognitive failure and health-related quality of life. International Journal of Occupational Safety and Ergonomics. 2016; 22: 426–432. DOI: 10.1080/10803548.2016.1164499
- 7Lyttle K. Optimizing consumable selection increases productivity, decreases fumes. Gases & Welding Distribution. 2004; 45–47.
- 8Cezar-Vaz MR, Bonow CA and Vaz JC. Risk communication concerning welding fumes for the primary preventive care of welding apprentices in southern Brazil. International Journal of Environmental Research and Public Health. 2015; 12: 986–1002. DOI: 10.3390/ijerph120100986
- 9Sajedifar J, Kokabi AH, Azam K, et al. The comparative assessment of welders’ exposure to welding fumes based on mass and number concentration. Health and Safety at Work. 2016; 6: 17–26.
- 10Hubbs AF, Sargent LM, Porter DW, et al. Nanotechnology: Toxicologic pathology. Toxicologic Pathology. 2013; 41: 395–409. DOI: 10.1177/0192623312467403
- 11El-Zein M, Malo J, Infante-Rivard C and Gautrin D. Prevalence and association of welding related systemic and respiratory symptoms in welders. Occupational and Environmental Medicine. 2003; 60: 655–661. DOI: 10.1136/oem.60.9.655
- 12Mehrifar Y, Zamanian Z and Pirami H. Respiratory exposure to toxic gases and metal fumes produced by welding processes and pulmonary function tests. Int J Occup Environ Med. 2019; 1: 40–49. DOI: 10.15171/ijoem.2019.1540
- 13Lillienberg L, Zock J, Kromhout H, et al. A population-based study on welding exposures at work and respiratory symptoms. Annals of Occupational Hygiene. 2008; 52: 107–115.
- 14Mehrifar Y, Pirami H and Farhang Dehghan S.
The relationship between exposure to manganese in welding fumes and incidence of migraine headache symptoms . Tehran University Medical Journal. TUMS Publications. 2018; 76: 135–141. - 15Yu IJ, Song KS, Chang HK, et al. Lung fibrosis in Sprague-Dawley rats, induced by exposure to manual metal arc-stainless steel welding fumes. Toxicological Sciences. 2001; 63: 99–106. DOI: 10.1093/toxsci/63.1.99
- 16Persoons R, Arnoux D, Monssu T, et al. Determinants of occupational exposure to metals by gas metal arc welding and risk management measures: A biomonitoring study. Toxicology Letters. 2014; 231: 135–141. DOI: 10.1016/j.toxlet.2014.09.008
- 17Adonaylo V and Oteiza P. Lead intoxication: Antioxidant defenses and oxidative damage in rat brain. Toxicology. 1999; 135: 77–85. DOI: 10.1016/S0300-483X(99)00051-7
- 18ACGIH. TLVs and BEIs, Documentation of the Threshold Limit Values and Biological Exposure Indices. American Conference Governmental of Industrial Hygieniists, Cincinnati, OH.
2017 ; 36–101. - 19Acharya U, Acharya S and Mishra M. Lead acetate induced cytotoxicity in male germinal cells of Swiss mice. Industrial Health. 2003; 41: 291–294. DOI: 10.2486/indhealth.41.291
- 20Antonini JM, Zeidler-Erdely PC, Young S-H, Roberts JR and Erdely A. Systemic immune cell response in rats after pulmonary exposure to manganese-containing particles collected from welding aerosols. Journal of Immunotoxicology. 2012; 9: 184–192. DOI: 10.3109/1547691X.2011.650733
- 21García-Lestón J, Méndez J, Pásaro E and Laffon B. Genotoxic effects of lead: An updated review. Environment International. 2010; 36: 623–636. DOI: 10.1016/j.envint.2010.04.011
- 22Poręba R, Gać P, Poręba M and Andrzejak R. The relationship between occupational exposure to lead and manifestation of cardiovascular complications in persons with arterial hypertension. Toxicology and Applied Pharmacology. 2010; 249: 41–46. DOI: 10.1016/j.taap.2010.08.012
- 23Ekong EB, Jaar B and Weaver V. Lead-related nephrotoxicity: A review of the epidemiologic evidence. Kidney International. 2006; 70: 2074–2084. DOI: 10.1038/sj.ki.5001809
- 24Telišman S, Čolak B, Pizent A, Jurasović J and Cvitković P. Reproductive toxicity of low-level lead exposure in men. Environmental Research. 2007; 105: 256–266. DOI: 10.1016/j.envres.2007.05.011
- 25Vigeh M, Smith DR and Hsu P-C. How does lead induce male infertility? Iranian Journal of Reproductive Medicine. 2011; 9: 1.
- 26Allouche L, Hamadouche M and Touabti A. Chronic effects of low lead levels on sperm quality, gonadotropins, and testosterone in albino rats. Experimental and Toxicologic Pathology. 2009; 61: 503–510. DOI: 10.1016/j.etp.2008.12.003
- 27Gulson BL, Mizon KJ, Korsch MJ, Palmer JM and Donnelly JB. Mobilization of lead from human bone tissue during pregnancy and lactation—A summary of long-term research. Science of the Total Environment. 2003; 303: 79–104. DOI: 10.1016/S0048-9697(02)00355-8
- 28Henkel R. The impact of oxidants on sperm function. Andrologia. 2005; 37: 205–206. DOI: 10.1111/j.1439-0272.2005.00699.x
- 29Tapisso JT, Marques CC, da Luz Mathias M and da Graça Ramalhinho M. Induction of micronuclei and sister chromatid exchange in bone-marrow cells and abnormalities in sperm of Algerian mice (Mus spretus) exposed to cadmium, lead, and zinc. Mutation Research/Genetic Toxicology and Environmental Mutagenesis. 2009; 678: 59–64. DOI: 10.1016/j.mrgentox.2009.07.001
- 30Batra N, Nehru B and Bansal M. Influence of lead and zinc on rat male reproduction at ‘biochemical and histopathological levels’. Journal of Applied Toxicology: An International Journal. 2001; 21: 507–512. DOI: 10.1002/jat.796
- 31Uzun FG, Kalender S, Durak D, Demir F and Kalender Y. Malathion-induced testicular toxicity in male rats and the protective effect of vitamins C and E. Food and Chemical Toxicology. 2009; 47: 1903–1908. DOI: 10.1016/j.fct.2009.05.001
- 32Sinclair S. Male infertility: Nutritional and environmental considerations. Alternative Medicine Review: A Journal of Clinical Therapeutic. 2000; 5: 28–38.
- 33Anjum MR, Sainath S, Suneetha Y and Reddy PS. Lead acetate induced reproductive and paternal mediated developmental toxicity in rats. Ecotoxicology and Environmental Safety. 2011; 74: 793–799. DOI: 10.1016/j.ecoenv.2010.10.044
- 34Smooda K. Effect of lead exposure on gonadotropin in rats. J Toxicology Physiological. 2015; 44: 313–322.
- 35NIOSH. Elements (ICP): Method 7300, Issue 3. NIOSH Manual of Analytical Methods: National Institute of Occupational Safety and Health; 2003.
- 36NIOSH. LEAD in blood and urine: Method 8003, Issue 2. NIOSH Manual of Analytical Methods: National Institute of Occupational Safety and Health; 1994.
- 37Chowdhury AR. Recent advances in heavy metals induced effect on male reproductive function: A retrospective. Al Ameen J Med Sci. 2009; 2: 37–42.
- 38Dehghan-Nasiri M, Golbabaii F, Koohpaii A, Rahimi-Forooshani A and Shahtaheri S. Biological and environmental monitoring of lead and exposure in the automobile industry. Iran Occupational Health. 2012; 8.
- 39Golpayegani A and Khanjani N. Occupational and environmental exposure to lead in Iran: A systematic review. Journal of Health and Development. 2012; 1: 74–89.
- 40Dorosti A and Shahrabi J. Study of blood lead levels, hemoglobin, & plasma ascorbic acid in A Car Company Welders. Salāmat-i kār-i Īrān. 2006; 3: 43–49.
- 41Wang P, Zhu B-L, Zhang H-D, et al. Notice of retraction investigation the concentrations of serum hormone among the male workers in the battery plant. 5th International Conference on Bioinformatics and Biomedical Engineering.
IEEE .2011 ; 1–4. DOI: 10.1109/icbbe.2011.5781446 - 42Taher MA, Hammadi SA and Ali AA. The chages in sex hormones in female working in battries manufacturing plant. Iraqi Journal of Pharmaceutical Sciences. (P-ISSN: 1683–3597, E-ISSN: 2521–3512) 2017; 15: 23–28.
- 43Vivoli G, Fantuzzi G, Bergomi M, et al. Relationship between low lead exposure and somatic growth in adolescents. Journal of Exposure Analysis and Environmental Epidemiology. 1993; 3: 201–209.
- 44Rodamilans M, Osaba MJM, To-Figueras J, et al. Lead toxicity on endocrine testicular function in an occupationally exposed population. Human Toxicology. 1988; 7: 125–128. DOI: 10.1177/096032718800700203
- 45Kumar S, Zaidi S, Gautam A, Dave L and Saiyed H. Semen quality and reproductive hormones among welders—A preliminary study. Environmental Health and Preventive Medicine. 2003; 8: 64–67. DOI: 10.1007/BF02897929
- 46Pant N, Kumar G, Upadhyay A, et al. Reproductive toxicity of lead, cadmium, and phthalate exposure in men. Environmental Science and Pollution Research. 2014; 21: 11066–11074. DOI: 10.1007/s11356-014-2986-5
- 47Chowdhury A, Chinoy N, Gautam A, et al. Effect of lead on human semen. Advances in Contraceptive Delivery Systems: CDS. 1986; 2: 208–210.
- 48Selevan SG, Borkovec L, Slott VL, et al. Semen quality and reproductive health of young Czech men exposed to seasonal air pollution. Environmental Health Perspectives. 2000; 108: 887. DOI: 10.1289/ehp.00108887
- 49Aminian O, Chavoshi F, Bahaedini LS, Soltani S and Najarkolaei FR. Relationship between blood lead level and male reproductive hormones in male lead exposed workers of a battery factory: A cross-sectional study. Iranian Journal of Reproductive Medicine. 2013; 11: 673.
