190
Electromagnetic Fields in Biological Systems
Sándor, K., Z. Helyes, K. Gyires, J. Szolcsányi, and J. László. 2007. Static magnetic fieldinduced anti-nociceptive effect and the involvement of capsaicin-sensitive sensory
nerves in this mechanism. Life Sci 81:97.
Sandrini, M., C. Umiltà, and E. Rusconi. 2011. The use of transcranial magnetic stimulation in cognitive neuroscience: A new synthesis of methodological issues. Neurosci
Biobehav Rev 35:516.
Sarvestani, A. S., P. Abdolmaleki, S. J. Mowla, F. Ghanati, E. Heshmati, Z. Tavasoli, and
A. M. Jahromi. 2010. Static magnetic fields aggravate the effects of ionizing radiation on cell cycle progression in bone marrow stem cells. Micron 41:101.
Saunders, R. 2005. Static magnetic fields: Animal studies. Prog Biophys Mol Biol 87:225.
Saunders, R. D., and J. G. Jefferys. 2002. Weak electric field interactions in the central
nervous system. Health Phys 83:366.
Saunders, R. D., and J. G. Jefferys. 2007. A neurobiological basis for ELF guidelines. Health
Phys 92:596.
Scaiano, J. C., F. L. Cozens, and J. McLean. 1994. Model for the rationalization of magnetic
field effects in vivo: Application of the radical-pair mechanism to biological systems.
Photochem Photobiol 59:585.
Scheffel, A., M. Gruska, D. Faivre, A. Linaroudis, J. M. Plitzko, and D. Schüler. 2006. An
acidic protein aligns magnetosomes along a filamentous structure in magnetotactic
bacteria. Nature 440:110.
Schenck, J. F. 2005. Physical interactions of static magnetic fields with living tissues. Prog
Biophys Mol Biol 87:185.
Schenck, J. F., C. L. Dumoulin, R. W. Redington, H. Y. Kressel, R. T. Elliott, and
I. L. McDougall. 1992. Human exposure to 4.0-Tesla magnetic fields in a whole-body
scanner. Med Phys 19:1089.
Schlamann, M., M. A. Voigt, S. Maderwald, A. K. Bitz, O. Kraff, S. C. Ladd, M. E. Ladd,
M. Forsting, and H. Wilhelm. 2010. Exposure to high-field MRI does not affect cognitive function. J Magn Reson Imaging 31:1061.
Schult, O. W., L. E. Feinendegen, S. Zaum, W. W. Shreeve, and R. N. Pierson. 2010.
Applications of BMI or BSI: Differences and revisions according to age and height.
J Obes 2010:647163.
Schulten, K. 1982a. Magnetic field effects in chemistry and biology. Adv Solid State
Phys 22:61.
Schulten, K. 1982b. Magnetic field effects in chemistry and biology. In Festkörperprobleme,
Vol. 22., ed. J. Treusch. Braunschweig: Vieweg.
Schwenzer, N. F., R. Bantleon, B. Maurer, R. Kehlbach, T. Herberts, C. D. Claussen, and
E. Rodegerdts. 2007. In vitro evaluation of magnetic resonance imaging at 3.0 Tesla
on clonogenic ability, proliferation, and cell cycle in human embryonic lung fibroblasts. Invest Radiol 42:212.
Sekino, M., Y. Inoue, and S. Ueno. 2004. Magnetic resonance imaging of mean values
and anisotropy of electrical conductivity in the human brain. Neurol Clin
Neurophysiol 55:1.
Sekino, M., T. Matsumoto, K. Yamaguchi, N. Iriguchi, and S. Ueno. 2004. A method for
NMR imaging of a magnetic field generated by electric current. IEEE Trans Magn
40:2188.
Electromagnetic Fields in Biological Systems
Sándor, K., Z. Helyes, K. Gyires, J. Szolcsányi, and J. László. 2007. Static magnetic fieldinduced anti-nociceptive effect and the involvement of capsaicin-sensitive sensory
nerves in this mechanism. Life Sci 81:97.
Sandrini, M., C. Umiltà, and E. Rusconi. 2011. The use of transcranial magnetic stimulation in cognitive neuroscience: A new synthesis of methodological issues. Neurosci
Biobehav Rev 35:516.
Sarvestani, A. S., P. Abdolmaleki, S. J. Mowla, F. Ghanati, E. Heshmati, Z. Tavasoli, and
A. M. Jahromi. 2010. Static magnetic fields aggravate the effects of ionizing radiation on cell cycle progression in bone marrow stem cells. Micron 41:101.
Saunders, R. 2005. Static magnetic fields: Animal studies. Prog Biophys Mol Biol 87:225.
Saunders, R. D., and J. G. Jefferys. 2002. Weak electric field interactions in the central
nervous system. Health Phys 83:366.
Saunders, R. D., and J. G. Jefferys. 2007. A neurobiological basis for ELF guidelines. Health
Phys 92:596.
Scaiano, J. C., F. L. Cozens, and J. McLean. 1994. Model for the rationalization of magnetic
field effects in vivo: Application of the radical-pair mechanism to biological systems.
Photochem Photobiol 59:585.
Scheffel, A., M. Gruska, D. Faivre, A. Linaroudis, J. M. Plitzko, and D. Schüler. 2006. An
acidic protein aligns magnetosomes along a filamentous structure in magnetotactic
bacteria. Nature 440:110.
Schenck, J. F. 2005. Physical interactions of static magnetic fields with living tissues. Prog
Biophys Mol Biol 87:185.
Schenck, J. F., C. L. Dumoulin, R. W. Redington, H. Y. Kressel, R. T. Elliott, and
I. L. McDougall. 1992. Human exposure to 4.0-Tesla magnetic fields in a whole-body
scanner. Med Phys 19:1089.
Schlamann, M., M. A. Voigt, S. Maderwald, A. K. Bitz, O. Kraff, S. C. Ladd, M. E. Ladd,
M. Forsting, and H. Wilhelm. 2010. Exposure to high-field MRI does not affect cognitive function. J Magn Reson Imaging 31:1061.
Schult, O. W., L. E. Feinendegen, S. Zaum, W. W. Shreeve, and R. N. Pierson. 2010.
Applications of BMI or BSI: Differences and revisions according to age and height.
J Obes 2010:647163.
Schulten, K. 1982a. Magnetic field effects in chemistry and biology. Adv Solid State
Phys 22:61.
Schulten, K. 1982b. Magnetic field effects in chemistry and biology. In Festkörperprobleme,
Vol. 22., ed. J. Treusch. Braunschweig: Vieweg.
Schwenzer, N. F., R. Bantleon, B. Maurer, R. Kehlbach, T. Herberts, C. D. Claussen, and
E. Rodegerdts. 2007. In vitro evaluation of magnetic resonance imaging at 3.0 Tesla
on clonogenic ability, proliferation, and cell cycle in human embryonic lung fibroblasts. Invest Radiol 42:212.
Sekino, M., Y. Inoue, and S. Ueno. 2004. Magnetic resonance imaging of mean values
and anisotropy of electrical conductivity in the human brain. Neurol Clin
Neurophysiol 55:1.
Sekino, M., T. Matsumoto, K. Yamaguchi, N. Iriguchi, and S. Ueno. 2004. A method for
NMR imaging of a magnetic field generated by electric current. IEEE Trans Magn
40:2188.
