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Arab M R, Sharifzadeh A, Sargolzaie Aval F, Talaei Khoozani,
Volume 63, Issue 4 (7-2005)
Abstract

Background: Fumes generated during electric welding are one of air pollutants of working place in industrial companies, which can cause some clinical signs and diseases in worker, including mucosal irritation, changing of semen quality and cancer. Chronic exposure of workers with these fumes can cause reduce sperm motility and forward penetration and decrease in normal sperm count. Although a lot of researches were done in this field up to now, there is little information about histopathological effects of these fumes on germinal epithelium. The aim of this study was to identify structural changes of germinal epithelium in Rat as an experimental model after exposure to fumes of electric welding in exposure chamber.
Material and Methods: A total number of 60 Sprague Dawley Rats were chosen and divided into experimental (40) and control (20) groups. Each of groups was subdivided into 2, 4, 6 and 8-week subgroups. The number of Rat in each subgroup of experimental and control group was 10 and 5 respectively. Animals were housed in standard situation. After adaptation experimental group were exposed to fumes of electric welding (AMA 2000 electrode, 100 Ampere, 0.1 cm/s speed of electrode welding) for 2 hour/day and 5 day/week. The rate of air turn over in exposure chamber was fixed to 12-15/hour. The amount of O3, CO, CO2, NO + NO2 and particulate matter were measured by Galtec detectors and Cellulose acetate filter respectively. According to time table animals were killed and specimens from testis were taken and fixed in formaline buffer solution and processed routinely. Sections with 5-7 micrometer in thickness were stained by H-E, PAS, PNA and Alcian blue pH=2.5. The thickness of germinal epithelium was measured and data were analyzed by Kruskall Wallis test.
Results: The results of this study showed a few quantitative and qualitative changes in germinal epithelium. Vasodilatation of vessels in tunica albuginea and interstitial tissue, decreasing of eosinophilia in myoid cells, increase in size of spermatogonia especially dark type, disorganization of association between sertoli and spermatogenic cell lineage and spermatogenic arrests in spermatocyte I period. There were significant difference between experimental and control group for thickness of germinal epithelium (p<0.001).
Conclusion: It seems that although some adaptation response was appeared in experimental group, a lot of structural changes also appeared in germinal epithelium. The amount and severity of these changes were dependent to 3 factors include the amount of fumes, the variety of it and the duration of exposure.
Younes Mehrifar , Hamideh Pirami , Somayeh Farhang Dehghan ,
Volume 76, Issue 2 (5-2018)
Abstract

Background: Welding generates complex metal aerosols, inhalation of which is linked to adverse health effects among welders. Exposure to manganese (Mn) fume in welding processes can have a harmful effect on welders’ health. Long-term, high-level exposure to Mn is associated with impaired central nervous system (CNS) function. The present study aims to investigate relationship between exposure to manganese in welding fumes and incidence of migraine headache symptoms.
Methods: This cross-sectional analytic study was conducted in March 2017 in an Iron Smelting Industry. Forty welders were selected as the exposure group and thirty-five employees were selected from the administrative unit as the control group. Data related to symptoms of migraine headache were collected using with Ahvaz migraine questionnaire (AMQ). Air samples were collected on mixed cellulose ester membrane filters in personal air samplers and then analyzed using inductively coupled plasma atomic emission spectroscopy (ICP-AES) (NIOSH Method 7300).
Results: The average concentration of welder’s exposure to manganese was 7.24±2.91 mg/m3, which is very higher (37 times) than the occupational exposure limit (Threshold limit value-time-weighted average). There was no significant difference between the mean age and work experience of the two groups (P<0.05). Comparison of the mean of migraine headache symptoms in the two groups of welders and office workers also showed that the frequency of these symptoms among welders was significantly higher than those reported by administrative staff (P<0.05). The correlation between the frequency of symptoms of migraine headache and the concentration of manganese in the air of the welders’ respiratory area was statistically significant (P<0.05).
Conclusion: Frequency of migraine headache symptoms was higher among welders compared to control group. Statistically the significant relationship was found between airborne Manganese concentration and occurrence of migraine headache; however, a conclusive conclusion is based on more comprehensive studies with larger sample size.


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