247
Interaction of Extremely Low–Frequency Electromagnetic Fields
Chiba, A., and K. Isaka. 1999. Distribution of induced current density inside an
ungrounded human model exposed to electric field (in Japanese with English summary). IEEJ Trans B 119:401–7.
Chiba, A., and K. Isaka. 2000. Current density distribution inside a human model with
erect position on the insulating circular plane in the electric field (in Japanese with
English summary). IEEJ Trans B 120:630–6.
Chiba, A., and K. Isaka. 2004. Analysis of induced current density inside human model
which stands on conductive ground layer in uniform electric field (in Japanese with
English summary). IEEJ Trans A 124:1193–7.
Chiu, R. S., and M. A. Stuchly. 2005. Electric fields in bone marrow substructures at
power-line frequencies. IEEE Trans BME 52:1103–9.
Christ, A., W. Kainz, E. G. Hahn, K. Honegger, M. Zefferer, E. Neufeld, W. Rascher et al.
2010. The Virtual Family-development of anatomical CAD models of two adults
and two children for dosimetric stimulations. Phys Med Biol 55:N23–38.
Chuang, H. R., and K. M. Chen. 1989. A numerical method for the computation of
induced currents inside 3-D heterogeneous biological bodies by ELF-LF electric
fields. IEEE Trans BME 36:628–34.
Cooper, T. G. 2002. Occupational Exposure to Electric and Magnetic Fields in the Context
of the ICNIRP Guidelines. Chilton: National Radiological Protection Board;
NRPB-W24.
Crotti, G., and D. Giordani. 2009. Analysis of critical situations in the evaluation of
human exposure to magnetic fields with complex waveforms. Radiat Prot Dosimetry
137:227–30.
Dawson, T. W., J. de Moerloose, and M. A. Stuchly. 1996. Comparison of magnetically
induced ELF fields in humans computed by FDTD and scalar potential FD codes.
Appl Comput Electromagn Soc J 11:63–71.
Dawson, T. W., and M. A. Stuchly. 1996. Analytic validation of a three-dimensional scalarpotential finite-difference code for low-frequency magnetic induction. Appl Comput
Electromagn Soc J 11:72–81.
Dawson, T. W., J. D. Moerloose, and M. A. Stuchly. 1997a. Hybrid finite-difference method
for high-resolution modeling of low-frequency electric induction in humans.
J Comput Phys 136:640–53.
Dawson, T. W., K. Caputa, and M. A. Stuchly. 1997b. A comparison of 60 Hz uniform
magnetic and electric induction in the human body. Phys Med Biol 42:2319–29.
Dawson, T. W., K. Caputa, and M. A. Stuchly. 1997c. Influence of human model resolution on computed currents induced in organs by 60 Hz magnetic fields.
Bioelectromagnetics 18:478–90.
Dawson, T. W., and M. A. Stuchly. 1997. An analytic solution for verification of computer
models for low-frequency magnetic induction. Radio Sci 32:343–67.
Dawson, T. W. 1997. Analytic solution for low-frequency magnetic induction in an equatorially stratified sphere: Horizontal excitation. Radio Sci 32:1761–76.
Dawson, T. W., K. Caputa, and M. A. Stuchly. 1998a. High-resolution organ dosimetry
for human exposure to low-frequency electric fields. IEEE Trans PWRD 13:366–73.
Dawson, T. W., and M. A. Stuchly. 1998b. High-resolution organ dosimetry for human
exposed to low-frequency magnetic fields. IEEE Trans Magn 34:708–18.
