245
Interaction of Extremely Low–Frequency Electromagnetic Fields
Acknowledgments
We thank Dr. Chiyoji Ohkubo, Director, Japan EMF Information Center, for his kind
support. We acknowledge Professor Emeritus Dr. Katsuo Isaka of the University of
Tokushima for his comments and discussions on this topic. We thank Mr. Thierry
Petinaux for his painstaking effort to edit the manuscript. We thank Dr. Soung-Ho
Myung of Korea Electrotechnology Research Institute, Changwon, Korea, and
Dr. Eugene Rhee of Chuo University, Tokyo, for their kindness.
References
ACGIH 2000. 1997. TLVs and BEIs: Threshold Limit Values for Chemical Substances
and Physical Agents Biological Exposure Indices. 109. Cincinnati, OH: American
Conference of Governmental Hygienists.
Ackerman, M. J. 1998. The visible human project. Proc IEEE 86:504–11.
Amoruso, V., and F. Lattarulo. 1989. ELF electric-field induced currents in the human
body. Alta Frequenza 68:385–90.
Amoruso, V., and F. Lattarulo. 1996. Diakoptic approach to the electrostatic man-animal
scaling problem. Electromagn Biol 15:63–74.
Andreuccetti, D., S. Priori, and N. Zoppetti. 2009. A simplified procedure for dosimetric evaluations on ELF sources with complex waveforms. Radiat Prot Dosimetry
137:201–5.
Bahr, A., T. Bolz, and C. Hennes. 2007. Numerical dosimetry ELF: Accuracy of the
method, variability of models and parameters, and the implication for quantifying
guidelines. Health Phys 92:521–30.
Baraton, P., and B. Hutzler. 1995. Magnetically induced currents in the human body. IEC
Technol Trends Assess 1–45.
Barchanski, A., M. Clemens, H. D. Gersem, T. Steiner, and T. Wdeiland. 2005a. Using
domain decomposition techniques for the calculation of low-frequency electric current densities in high-resolution 3D human anatomy models. Int J Comput Math
Electr Electron Eng 24:458–67.
Barchanski, A., H. De Gersem, E. Gjonaj, and T. Weiland. 2005b. Impact of the displacement current on low-frequency electromagnetic fields computed using highresolution anatomy models. Phys Med Biol 50:N243–9.
Barchanski, A., M. Clemens, H. De Gersem, and T. Weiland. 2006a. Efficient calculation
of current densities in the human body induced by arbitrarily shaped low-frequency
magnetic fields. J Comput Phys 214:81–95.
Barchanski, A., T. Steiner, H. De Gersem, M. Clemens, and T. Weikand. 2006b. Local
grid refinement for low-frequency current computations in 3-D human anatomy
models. IEEE Trans Magn 42:1371–4.
Barchanski, A., M. Clemens, E. Gjonaj, H. De Gersem, and T. Weikand. 2007. Large-scale
calculation of low-frequency-induced currents in high-resolution human body
models. IEEE Trans Magn 43:1693–6.
Barnes, H. C., A. J. McElory, and J. H. Charkow. 1967. Rational analysis of electric fields in
live line working. IEEE Trans PAS 86:482–92.
Précédent

- 262/459

Suivant