Raphaël Bodin

Raphaël Bodin
  • PhD
  • PhD Student at French National Institute for Industrial Environment and Risks

Working on neurodevelopmental impact of 900 MHz (2G) and 3 500 MHz 5G) frequency exposure

About

4
Publications
271
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12
Citations
Introduction
Investigation of the Impacts of Neurodevelopmental Exposures to Electromagnetic Fields (including 2 and 5G) on Behavioral Responses and Neurogenesis: Longitudinal In Vivo Study in Rats. After the skin and the ear, the brain is the organ most exposed by the waves entering the body (900 - 1800 MHz (2G), and 3.5 GH (5G)).
Current institution
French National Institute for Industrial Environment and Risks
Current position
  • PhD Student

Publications

Publications (4)
Article
Full-text available
People have been exposed to the 900 MHz mobile phone electromagnetic field for approximately 30 years. There is still no conclusion from immature rodent experiments regarding the potential effects of nonthermal radiofrequency (RF) 900 MHz continuous wave exposure during biological development. Here, we test the hypothesis that mother rats exposed a...
Article
Full-text available
The fifth generation (5G) network is currently being worldwide spread out, raising questions about the potential impact of this new technology, particularly on immature organisms. The current study aimed to investigate the effects of daily 5G electromagnetic field (EMF) perinatal exposure on the neurodevelopment of rats. The exposure level was set...
Article
Full-text available
The 5G electromagnetic field (EMF) network is currently being worldwide spread out. It raises concerns on the potential effects of radiofrequency on neurodevelopment. During the perinatal period, the organism is immature. Its skin and skull are thinner than in adults and less effective at preventing EMF penetration [1] . In addition, research is n...
Article
Full-text available
Highly organized circuits of enteric neurons are required for the regulation of gastrointestinal functions, such as peristaltism or migrating motor complex. However, the factors and molecular mechanisms that regulate the connectivity of enteric neurons and their assembly into functional neuronal networks are largely unknown. A better understanding...

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