193
Static, Low-Frequency, and Pulsed Magnetic Fields
Till, U., C. R. Timmel, B. Brocklehurst, and P. J. Hore. 1998. The influence of very small
magnetic fields on radical recombination reactions in the limit of slow recombination. Chem Phys Lett 298:87.
Timmel, C. R., U. Till, B. Brocklehurst, K. A. McLauchlan, and P. J. Hore. 1998. Effects of
weak magnetic fields on free radical recombination reactions. Mol Phys 95:71.
Tomasi, D. G., and R. Wang. 2007. Induced magnetic field gradients and forces in the
human head in MRI. J Magn Reson Imaging 26:1340.
Tomatsu, S., Y. Someya, Y. W. Sung, S. Ogawa, and S. Kakei. 2008. Temporal feature of
BOLD responses varies with temporal patterns of movement. Neurosci Res 62:160.
Torbet, J., M. Fryssinet, and G. Hudry-Clergeon. 1981. Oriented fibrin gels formed by
polymerization in strong magnetic fields. Nature 289:91.
Torres-Duran, P. V., A. Ferreira-Hermosillo, M. A. Juarez-Oropeza, D. Elias-Viñas, and
L. Verdugo-Diaz. 2007. Effects of whole body exposure to extremely low frequency
electromagnetic fields (ELF-EMF) on serum and liver lipid levels, in the rat. Lipids
Health Dis 6:31.
Tsai, M. T., W. J. Li, R. S. Tuan, and W. H. Chang. 2009. Modulation of osteogenesis in
human mesenchymal stem cells by specific pulsed electromagnetic field stimulation. J Orthop Res 27:1169.
Tuch, D. S., V. J. Wedeen, A. M. Dale, J. S. George, and J. W. Belliveau. 2001. Conductivity
tensor mapping of the human brain using diffusion tensor MRI. Proc Natl Acad Sci
U S A 98:11697.
Ueno, S., and K. Harada. 1986. Experimental difficulties in observing the effects of magnetic fields on biological and chemical processes. IEEE Trans Magn 22:868.
Ueno, S., and K. Iramina. 1991. Modeling and source localization of MEG activities. Brain
Topogr 3:151.
Ueno, S., and N. Iriguchi. 1998. Impedance magnetic resonance imaging: A method for
imaging of impedance distributions based on magnetic resonance imaging. J Appl
Phys 83:6450.
Ueno, S., and M. Iwasaka. 1994a. Parting of water by magnetic fields. IEEE Trans Magn
30:4698.
Ueno, S., and M. Iwasaka. 1994b. Properties of diamagnetic fluid in high-gradient magnetic fields. J Appl Phys 75:7177.
Ueno, S., and M. Iwasaka. 1996a. Catalytic activity of catalase under strong magnetic
fields of up to 8 T. J Appl Phys 79:4705.
Ueno, S., and M. Iwasaka. 1996b. Magnetic nerve stimulation and effects of magnetic
fields on biological, physical and chemical processes. In Biological Effects of Magnetic
and Electromagnetic Fields, ed. S. Ueno, 1. New York: Springer.
Ueno, S., P. Lovsund, and P. A. Oberg. 1986. Effects of time-varying magnetic fields on
action potential in lobster giant axon. Med Biol Eng Comput 24:521.
Ueno, S., T. Matsuda, and M. Fujiki. 1989. Localized stimulation of the human cortex
by opposing magnetic fields. In Advances in Biomagnetism, ed. S. J. Williamson,
M. Hoke, G. Stroink, and M. Kotani, 529. New York: Plenum Press.
Ueno, S., T. Matsuda, and M. Fujiki. 1990. Functional mapping of the human motor cortex
obtained by focal and vectorial magnetic stimulation of the brain. IEEE Trans Magn
26:1539.
Static, Low-Frequency, and Pulsed Magnetic Fields
Till, U., C. R. Timmel, B. Brocklehurst, and P. J. Hore. 1998. The influence of very small
magnetic fields on radical recombination reactions in the limit of slow recombination. Chem Phys Lett 298:87.
Timmel, C. R., U. Till, B. Brocklehurst, K. A. McLauchlan, and P. J. Hore. 1998. Effects of
weak magnetic fields on free radical recombination reactions. Mol Phys 95:71.
Tomasi, D. G., and R. Wang. 2007. Induced magnetic field gradients and forces in the
human head in MRI. J Magn Reson Imaging 26:1340.
Tomatsu, S., Y. Someya, Y. W. Sung, S. Ogawa, and S. Kakei. 2008. Temporal feature of
BOLD responses varies with temporal patterns of movement. Neurosci Res 62:160.
Torbet, J., M. Fryssinet, and G. Hudry-Clergeon. 1981. Oriented fibrin gels formed by
polymerization in strong magnetic fields. Nature 289:91.
Torres-Duran, P. V., A. Ferreira-Hermosillo, M. A. Juarez-Oropeza, D. Elias-Viñas, and
L. Verdugo-Diaz. 2007. Effects of whole body exposure to extremely low frequency
electromagnetic fields (ELF-EMF) on serum and liver lipid levels, in the rat. Lipids
Health Dis 6:31.
Tsai, M. T., W. J. Li, R. S. Tuan, and W. H. Chang. 2009. Modulation of osteogenesis in
human mesenchymal stem cells by specific pulsed electromagnetic field stimulation. J Orthop Res 27:1169.
Tuch, D. S., V. J. Wedeen, A. M. Dale, J. S. George, and J. W. Belliveau. 2001. Conductivity
tensor mapping of the human brain using diffusion tensor MRI. Proc Natl Acad Sci
U S A 98:11697.
Ueno, S., and K. Harada. 1986. Experimental difficulties in observing the effects of magnetic fields on biological and chemical processes. IEEE Trans Magn 22:868.
Ueno, S., and K. Iramina. 1991. Modeling and source localization of MEG activities. Brain
Topogr 3:151.
Ueno, S., and N. Iriguchi. 1998. Impedance magnetic resonance imaging: A method for
imaging of impedance distributions based on magnetic resonance imaging. J Appl
Phys 83:6450.
Ueno, S., and M. Iwasaka. 1994a. Parting of water by magnetic fields. IEEE Trans Magn
30:4698.
Ueno, S., and M. Iwasaka. 1994b. Properties of diamagnetic fluid in high-gradient magnetic fields. J Appl Phys 75:7177.
Ueno, S., and M. Iwasaka. 1996a. Catalytic activity of catalase under strong magnetic
fields of up to 8 T. J Appl Phys 79:4705.
Ueno, S., and M. Iwasaka. 1996b. Magnetic nerve stimulation and effects of magnetic
fields on biological, physical and chemical processes. In Biological Effects of Magnetic
and Electromagnetic Fields, ed. S. Ueno, 1. New York: Springer.
Ueno, S., P. Lovsund, and P. A. Oberg. 1986. Effects of time-varying magnetic fields on
action potential in lobster giant axon. Med Biol Eng Comput 24:521.
Ueno, S., T. Matsuda, and M. Fujiki. 1989. Localized stimulation of the human cortex
by opposing magnetic fields. In Advances in Biomagnetism, ed. S. J. Williamson,
M. Hoke, G. Stroink, and M. Kotani, 529. New York: Plenum Press.
Ueno, S., T. Matsuda, and M. Fujiki. 1990. Functional mapping of the human motor cortex
obtained by focal and vectorial magnetic stimulation of the brain. IEEE Trans Magn
26:1539.
