325
Mobile Communication Fields in Biological Systems
Meier, K., V. Hombach, R. Kaestle, R. Yew-Siow, and N. Kuster. 1997. The dependence of
electromagnetic energy absorption upon human-head modeling at 1800 MHz. IEEE
Trans Microw Theory Tech 45:2058–62.
Mild, K. H., and J. Wilen. 2009. Occupational exposure in wireless communication. In
Advances in Electromagnetic Fields in Living Systems, Health Effects of Cell Phone
Radiation, ed. J. C. Lin, Vol. 5, 199–219. New York: Springer.
Mochizuki, S., S. Watanabe, M. Taki, Y. Yamanaka, and H. Shirai. 2004. A new iterative
MoM/FDTD formulation for simulating human exposure to electromagnetic waves.
IEICE Trans Electron E87-C:1540–7.
Monebhurrun, V. 2010. Conservativeness of the SAM phantom for the SAR evaluation in
the child’s head. IEEE Trans Magn 46:3477–80.
Mur, G. 1981. Absorbing boundary conditions for the finite-difference approximation of
the time-domain electromagnetic field equations. IEEE Trans Electromagn Compat
23:377–82.
Nagaoka, T., T. Togashi, K. Saito, M. Takahashi, K. Ito, T. Ueda, H. Osada, H. Ito, and
S. Watanabe. 2006. An anatomically realistic voxel model of the pregnant woman
and numerical dosimetry for a whole-body exposure to RF electromagnetic fields.
In Proc IEEE 28th Ann Conf Eng Med Biol Soc, IEEE, 5463–7. New York.
Nagaoka, T., T. Togashi, K. Saito, M. Takahashi, K. Ito, and S. Watanabe. 2007. An anatomically realistic whole-body pregnant-woman model and specific absorption rates for
pregnant-woman exposure to electromagnetic plane waves from 10 MHz to 2 GHz.
Phys Med Biol 52:6731–45.
Nagaoka, T., S. Watanabe, K. Sakurai, E. Kunieda, M. Taki, and Y. Yamanaka. 2004.
Development of realistic high-resolution whole-body voxel models of Japanese
adult males and females of average height and weight, and application of models to
radio-frequency electromagnetic field dosimetry. Phys Med Biol 49:1–15.
Neitzke, H. P., J. Osterhoff, K. Peklo, and H. Voigt. 2007. Determination of exposure due
to mobile phone base stations in an epidemiological study. Radiat Protein Dosim
124:35–9.
Neubauer, G., M. Feychting, Y. Hamnerius, L. Kheifets, N. Kuster, I. Ruiz, J. Schuz,
R. Uberbacher, J. Wiart, and M. Roosli. 2007. Feasibility of future epidemiological
studies on possible health effects of mobile phone base stations. Bioelectromagnetics
28:224–30.
Nicolas, E., D. Lautru, F. Jacquin, M. F. Wong, and J. Wiart. 2001. Specific absorption rate
assessments based on a selective isotropic measuring system for electromagnetic
fields. IEEE Trans Instrum Meas 50:397–401.
Nikawa, Y., M. Chino, and K. Kikuchi. 1996. Soft and dry phantom modeling material
using silicone rubber with carbon fiber. IEEE Trans Microw Theory Tech 44:1949–53.
Nikita, K. S., M. Cavagnaro, P. Bernardi, N. K. Uzunoglu, S. Pisa, E. Piuzzi, J. N. Sahalos et al.
2000a. A study of uncertainties in modeling antenna performance and power absorption in the head of a cellular phone user. IEEE Trans Microw Theory Tech 48:2676–85.
Nikita, K. S., G. S. Stamatakos, N. K. Uzunoglu, and A. Karafotias. 2000b. Analysis of
the interaction between a layered spherical human head model and a finite length
dipole. IEEE Trans Microw Theory Tech 48:2003–13.
Mobile Communication Fields in Biological Systems
Meier, K., V. Hombach, R. Kaestle, R. Yew-Siow, and N. Kuster. 1997. The dependence of
electromagnetic energy absorption upon human-head modeling at 1800 MHz. IEEE
Trans Microw Theory Tech 45:2058–62.
Mild, K. H., and J. Wilen. 2009. Occupational exposure in wireless communication. In
Advances in Electromagnetic Fields in Living Systems, Health Effects of Cell Phone
Radiation, ed. J. C. Lin, Vol. 5, 199–219. New York: Springer.
Mochizuki, S., S. Watanabe, M. Taki, Y. Yamanaka, and H. Shirai. 2004. A new iterative
MoM/FDTD formulation for simulating human exposure to electromagnetic waves.
IEICE Trans Electron E87-C:1540–7.
Monebhurrun, V. 2010. Conservativeness of the SAM phantom for the SAR evaluation in
the child’s head. IEEE Trans Magn 46:3477–80.
Mur, G. 1981. Absorbing boundary conditions for the finite-difference approximation of
the time-domain electromagnetic field equations. IEEE Trans Electromagn Compat
23:377–82.
Nagaoka, T., T. Togashi, K. Saito, M. Takahashi, K. Ito, T. Ueda, H. Osada, H. Ito, and
S. Watanabe. 2006. An anatomically realistic voxel model of the pregnant woman
and numerical dosimetry for a whole-body exposure to RF electromagnetic fields.
In Proc IEEE 28th Ann Conf Eng Med Biol Soc, IEEE, 5463–7. New York.
Nagaoka, T., T. Togashi, K. Saito, M. Takahashi, K. Ito, and S. Watanabe. 2007. An anatomically realistic whole-body pregnant-woman model and specific absorption rates for
pregnant-woman exposure to electromagnetic plane waves from 10 MHz to 2 GHz.
Phys Med Biol 52:6731–45.
Nagaoka, T., S. Watanabe, K. Sakurai, E. Kunieda, M. Taki, and Y. Yamanaka. 2004.
Development of realistic high-resolution whole-body voxel models of Japanese
adult males and females of average height and weight, and application of models to
radio-frequency electromagnetic field dosimetry. Phys Med Biol 49:1–15.
Neitzke, H. P., J. Osterhoff, K. Peklo, and H. Voigt. 2007. Determination of exposure due
to mobile phone base stations in an epidemiological study. Radiat Protein Dosim
124:35–9.
Neubauer, G., M. Feychting, Y. Hamnerius, L. Kheifets, N. Kuster, I. Ruiz, J. Schuz,
R. Uberbacher, J. Wiart, and M. Roosli. 2007. Feasibility of future epidemiological
studies on possible health effects of mobile phone base stations. Bioelectromagnetics
28:224–30.
Nicolas, E., D. Lautru, F. Jacquin, M. F. Wong, and J. Wiart. 2001. Specific absorption rate
assessments based on a selective isotropic measuring system for electromagnetic
fields. IEEE Trans Instrum Meas 50:397–401.
Nikawa, Y., M. Chino, and K. Kikuchi. 1996. Soft and dry phantom modeling material
using silicone rubber with carbon fiber. IEEE Trans Microw Theory Tech 44:1949–53.
Nikita, K. S., M. Cavagnaro, P. Bernardi, N. K. Uzunoglu, S. Pisa, E. Piuzzi, J. N. Sahalos et al.
2000a. A study of uncertainties in modeling antenna performance and power absorption in the head of a cellular phone user. IEEE Trans Microw Theory Tech 48:2676–85.
Nikita, K. S., G. S. Stamatakos, N. K. Uzunoglu, and A. Karafotias. 2000b. Analysis of
the interaction between a layered spherical human head model and a finite length
dipole. IEEE Trans Microw Theory Tech 48:2003–13.
