Title :
Radio-wave exposure of the human head: analytical study based on a versatile eccentric spheres model including a brain core and a pair of eyeballs
Author :
Moneda, Angela P. ; Ioannidou, Melina P. ; Chrissoulidis, Dimitris P.
Author_Institution :
Dept. of Electr. & Comput. Eng., Aristotle Univ. of Thessaloniki, Greece
fDate :
6/1/2003 12:00:00 AM
Abstract :
A versatile eccentric-spheres model of the human head is used to investigate radio-wave absorption. Numerical results, obtained by use of an exact analytical solution, are presented for the total, percentage, and gram-specific absorption. Interest is mainly in the brain and in the eyes of an adult or an infant head. Our model comprises a host sphere and several spherical inclusions, all concentrically stratified with respect to their own center. Any number of inclusions and any number of concentric layers for the host sphere and each one of the inclusions can be considered. Excitation is provided either by a plane-wave or by a nearby electric dipole. The analytical solution is obtained by use of the indirect-mode matching method. The theory of this paper and the accompanying computer code constitute a versatile tool for analytical studies of cellular-phone interactions with the human head. Specific absorption rate maps in a horizontal cross section of the head model manifest the existence of hot spots in the eyes and near the center of the brain.
Keywords :
biological effects of radiation; brain; electromagnetic wave absorption; eye; health hazards; mobile handsets; paediatrics; physiological models; radiation monitoring; adult head; brain center; brain core; cellular-phone interactions; computer code; concentric layers; concentrically stratified spherical inclusions; exact analytical solution; eyes; gram-specific absorption; handheld transceivers; head model; horizontal cross section; host sphere; hot spots; human head; indirect-mode matching method; infant head; nearby electric dipole; numerical results; pair of eyeballs; percentage absorption; plane-wave; radio-wave exposure; specific absorption rate maps; total absorption; versatile eccentric spheres model; Brain modeling; Electromagnetic radiation; Electromagnetic wave absorption; Eyes; Finite difference methods; GSM; Humans; Magnetic analysis; Magnetic heads; Time domain analysis; Adult; Brain; Cellular Phone; Computer Simulation; Eye; Head; Humans; Infant; Microwaves; Models, Biological; Ocular Physiology; Radio Waves; Radiometry; Scattering, Radiation;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2003.812222