189
Static, Low-Frequency, and Pulsed Magnetic Fields
Ritz, T., M. Ahmad, H. Mouritsen, R. Wiltschko, and W. Wiltschko. 2010. Photoreceptorbased magnetoreception: Optimal design of receptor molecules, cells, and neuronal
processing. J R Soc Interface 7:S135.
Ritz, T., D. H. Dommer, and J. B. Phillips. 2002. Shedding light on vertebrate magnetoreception. Neuron 34:503.
Ritz, T., P. Thalau, J. B. Phillips, R. Wiltschko, and W. Wiltschko. 2004. Resonance effects
indicate a radical-pair mechanism for avian magnetic compass. Nature 429:177.
Robertson, J. A., N. Juen, J. Théberge, J. Weller, D. J. Drost, F. S. Prato, and A. W. Thomas.
2010. Evidence for a dose-dependent effect of pulsed magnetic fields on pain processing. Neurosci Lett 482:160.
Robertson, J. A., A. W. Thomas, Y. Bureau, and F. S. Prato. 2007. The influence
of extremely low frequency magnetic fields on cytoprotection and repair.
Bioelectromagnetics 28:16.
Rodgers, C. T., and P. J. Hore. 2009. Chemical magnetoreception in birds: The radical pair
mechanism. Proc Natl Acad Sci U S A 106:353.
Rossi, S., M. Hallett, P. M. Rossini, and A. Pascual-Leone. 2009. Safety, ethical considerations, and application guidelines for the use of transcranial magnetic stimulation
in clinical practice and research. Clin Neurophysiol 120:2008.
Roth, Y., G. S. Pell, and A. Zangen. 2010. Motor evoked potential latency, motor threshold and electric field measurements as indices of transcranial magnetic stimulation
depth. Clin Neurophysiol 121:255.
Rothwell, J. C., B. L. Day, P. D. Thompson, J. P. Dick, and C. D. Marsden. 1987. Some experiences of techniques for stimulation of the human cerebral motor cortex through
the scalp. Neurosurgery 20:156.
Sadleir, R. J., S. C. Grant, and E. J. Woo. 2010. Can high-field MREIT be used to directly
detect neural activity? Theoretical considerations. Neuroimage 52:205.
Saito, K., H. Suzuki, and K. Suzuki. 2006. Teratogenic effects of static magnetic field on
mouse fetuses. Reprod Toxicol 22:118.
Sakuraba, T., Y. Shimada, S. Takahashi, T. Matsunaga, E. Itoi, and M. Kawatani. 2005. The
effect of magnetic stimulation on unloaded soleus muscle of rat: Changes in myosin
heavy chain mRNA isoforms. Biomed Res 26:15.
Sakurai, T., S. Terashima, and J. Miyakoshi. 2008. Enhanced secretion of prostaglandin E 2
from osteoblasts by exposure to a strong static magnetic field. Bioelectromagnetics
29:277.
Sakurai, T., S. Terashima, and J. Miyakoshi. 2009. Effects of strong static magnetic fields
used in magnetic resonance imaging on insulin-secreting cells. Bioelectromagnetics
30:1.
Sakurai, H., H. Yasui, K. Kunitomi, M. Kamatari, N. Kaneko, and A. Nakayama. 2000.
Effects of static magnetic field on dissolved oxygen levels in aqueous solutions containing copper (II), iron (II), and heme iron (III) complexes. Pathophysiology 7:93.
Sakurai, T., M. Yoshimoto, S. Koyama, and J. Miyakoshi. 2008. Exposure to extremely low
frequency magnetic fields affects insulin-secreting cells. Bioelectromagnetics 29:118.
Salerno, S., C. La Mendola, M. P. La Manna, A. L. Casto, N. Caccamo, and A. Salerno.
2009. Reversible effect of magnetic fields on human lymphocyte activation patterns:
Different sensitivity of naive and memory lymphocyte subsets. Radiat Res 172:444.
Static, Low-Frequency, and Pulsed Magnetic Fields
Ritz, T., M. Ahmad, H. Mouritsen, R. Wiltschko, and W. Wiltschko. 2010. Photoreceptorbased magnetoreception: Optimal design of receptor molecules, cells, and neuronal
processing. J R Soc Interface 7:S135.
Ritz, T., D. H. Dommer, and J. B. Phillips. 2002. Shedding light on vertebrate magnetoreception. Neuron 34:503.
Ritz, T., P. Thalau, J. B. Phillips, R. Wiltschko, and W. Wiltschko. 2004. Resonance effects
indicate a radical-pair mechanism for avian magnetic compass. Nature 429:177.
Robertson, J. A., N. Juen, J. Théberge, J. Weller, D. J. Drost, F. S. Prato, and A. W. Thomas.
2010. Evidence for a dose-dependent effect of pulsed magnetic fields on pain processing. Neurosci Lett 482:160.
Robertson, J. A., A. W. Thomas, Y. Bureau, and F. S. Prato. 2007. The influence
of extremely low frequency magnetic fields on cytoprotection and repair.
Bioelectromagnetics 28:16.
Rodgers, C. T., and P. J. Hore. 2009. Chemical magnetoreception in birds: The radical pair
mechanism. Proc Natl Acad Sci U S A 106:353.
Rossi, S., M. Hallett, P. M. Rossini, and A. Pascual-Leone. 2009. Safety, ethical considerations, and application guidelines for the use of transcranial magnetic stimulation
in clinical practice and research. Clin Neurophysiol 120:2008.
Roth, Y., G. S. Pell, and A. Zangen. 2010. Motor evoked potential latency, motor threshold and electric field measurements as indices of transcranial magnetic stimulation
depth. Clin Neurophysiol 121:255.
Rothwell, J. C., B. L. Day, P. D. Thompson, J. P. Dick, and C. D. Marsden. 1987. Some experiences of techniques for stimulation of the human cerebral motor cortex through
the scalp. Neurosurgery 20:156.
Sadleir, R. J., S. C. Grant, and E. J. Woo. 2010. Can high-field MREIT be used to directly
detect neural activity? Theoretical considerations. Neuroimage 52:205.
Saito, K., H. Suzuki, and K. Suzuki. 2006. Teratogenic effects of static magnetic field on
mouse fetuses. Reprod Toxicol 22:118.
Sakuraba, T., Y. Shimada, S. Takahashi, T. Matsunaga, E. Itoi, and M. Kawatani. 2005. The
effect of magnetic stimulation on unloaded soleus muscle of rat: Changes in myosin
heavy chain mRNA isoforms. Biomed Res 26:15.
Sakurai, T., S. Terashima, and J. Miyakoshi. 2008. Enhanced secretion of prostaglandin E 2
from osteoblasts by exposure to a strong static magnetic field. Bioelectromagnetics
29:277.
Sakurai, T., S. Terashima, and J. Miyakoshi. 2009. Effects of strong static magnetic fields
used in magnetic resonance imaging on insulin-secreting cells. Bioelectromagnetics
30:1.
Sakurai, H., H. Yasui, K. Kunitomi, M. Kamatari, N. Kaneko, and A. Nakayama. 2000.
Effects of static magnetic field on dissolved oxygen levels in aqueous solutions containing copper (II), iron (II), and heme iron (III) complexes. Pathophysiology 7:93.
Sakurai, T., M. Yoshimoto, S. Koyama, and J. Miyakoshi. 2008. Exposure to extremely low
frequency magnetic fields affects insulin-secreting cells. Bioelectromagnetics 29:118.
Salerno, S., C. La Mendola, M. P. La Manna, A. L. Casto, N. Caccamo, and A. Salerno.
2009. Reversible effect of magnetic fields on human lymphocyte activation patterns:
Different sensitivity of naive and memory lymphocyte subsets. Radiat Res 172:444.
