The interaction between electromagnetic fields at megahertz, gigahertz and terahertz frequencies with cells, tissues
Sergii Romanenko1, Ryan Begley2, Alan R Harvey3,4
1School of Physics, The University of Western Australia, Perth, Western Australia, Australia sergii.romanenko@uwa.edu.au.
Abstract:
Since regular radio broadcasts started in the 1920s, the exposure to human-made electromagnetic fields has steadily increased. These days we are not only exposed to radio waves but also other frequencies from a variety of sources, mainly from communication and security devices. Considering that nearly all biological systems interact with electromagnetic fields, understanding the affects is essential for safety and technological progress. This paper systematically reviews the role and effects of static and pulsed radio frequencies (100-109 Hz), millimetre waves (MMWs) or gigahertz (109-1011 Hz), and terahertz (1011-1013 Hz) on various biomolecules, cells and tissues. Electromagnetic fields have been shown to affect the activity in cell membranes (sodium versus potassium ion conductivities) and non-selective channels, transmembrane potentials and even the cell cycle. Particular attention is given to millimetre and terahertz radiation due to their increasing utilization and, hence, increasing human exposure. MMWs are known to alter active transport across cell membranes, and it has been reported that terahertz radiation may interfere with DNA and cause genomic instabilities. These and other phenomena are discussed along with the discrepancies and controversies from published studies.
Related Concept Videos
Biological Effects of Radiation
Interaction of EM Radiation with Matter: Spectroscopy
Dual Nature of Electromagnetic (EM) Radiation
Wavelength is the distance between two consecutive peaks (the highest point) or troughs (the lowest point) in the wave. Frequency is the number of...
The Electromagnetic Spectrum
The Electromagnetic Spectrum
Generating Electromagnetic Radiations


