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   study of ultra-weak cw and amplitude-modulated microwaves effects on stem cell proliferation: an experimental and hypothetical approach  
   
نویسنده rouzbahani yashar ,kehtari mousa ,imani mahdi ,saviz mehrdad ,shabani iman ,moradikhah farzad ,alizadeh farhad ,karami mohammad-hossein ,seyedjafari ehsan ,jooyan najmeh ,mostajabi zahra ,faraji-dana reza
منبع aut journal of electrical engineering - 2020 - دوره : 52 - شماره : 1 - صفحه:3 -8
چکیده    Weak microwave radiation (wmr) in our environment has raised health concerns in the public. among those, communication frequencies are more than ever becoming widespread and their effects need thorough studies. a correct understanding of these effects in-vivo by in-vitro experiments shall preferentially use primary cells. in this study we compared non-modulated (cw) and modulated wmr exposure of biological cells in-vitro. human admsc (adipose-derived mesenchymal stem cells) were exposed to very weak non-thermal levels of microwave electromagnetic fields at 1135 mhz , sar (specific absorption rate) ≈ 0.002 w/kg (watt per kilogram) for 30 minutes daily for 4 days. a statistically significant decrease in proliferation rate of these stem cells was observed compared to the control group with no exposure. when amplitude-modulated exposure (15 hz (hertz) with a depth of 80%) was used with the same carrier frequency of 1135 mhz (mega hertz) and consistent average power, the cell numbers showed no statistically significant difference from the non-modulated exposure, but were nevertheless lower than the not-exposed control. the observed decrease in proliferation in response to -weak microwavefields supports the hypothesis that non-excitable cells, such as undifferentiated mesenchymal stem cells can interact with, and respond to weak electromagnetic radiation at communication frequencies. possible mechanisms responsible for the observed results havebeen hypothesized and directions provided for future research.
کلیدواژه microwave em fields ,stem cell ,interaction ,weak field ,non-thermal effects ,proliferation
آدرس amirkabir university of technology (tehran polytechnic), biomedical engineering department, iran, university of tehran, school of biology, college of science, developmental biology laboratory, iran, amirkabir university of technology (tehran polytechnic), biomedical engineering department, iran, amirkabir university of technology (tehran polytechnic), biomedical engineering department, iran, amirkabir university of technology (tehran polytechnic), biomedical engineering department, iran, amirkabir university of technology (tehran polytechnic), biomedical engineering department, iran, amirkabir university of technology (tehran polytechnic), biomedical engineering department, iran, university of tehran, school of biology, college of science, developmental biology laboratory, iran, university of tehran, college of science, department of biotechnology, iran, university of tehran, school of electrical and computer engineering, bioelectromagnetics laboratory, iran, university of tehran, school of electrical and computer engineering, iran, university of tehran, center of excellence on applied electromagnetic systems, school of electrical and computer engineering, college of engineering, iran
پست الکترونیکی reza@ut.ac.ir
 
     
   
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