195
Views
18
CrossRef citations to date
0
Altmetric
Research Articles

Variable spatial magnetic field influences peripheral nerves regeneration in rats

, , , , , & show all
Pages 198-205 | Received 28 Aug 2012, Accepted 24 Apr 2013, Published online: 19 Jun 2013

References

  • Bain, J. R., Mackinnon, S. E., Hunter, D. A. (1989). Functional evaluation of complete sciatic, peroneal, and posterior tibial nerve lesions in the rat. Plast. Reconstr. Surg. 83:129–138
  • Berg, H. (1999). Problems of weak magnetic field effects in cell biology. Bioelectrochem. Bioenerg. 48:355–360
  • Binhi, V. N. (2000). Amplitude and frequency dissociation spectra of ion-protein complexes rotating in magnetic fields. Bioelectromagnetics. 21:34–45
  • Binhi, V. N., Goldman, R. (2000). Ion-protein dissociation predict ‘window’ in electric field induced wound, cell proliferation. Biochim. Biophys. Acta. 1474:147–156
  • Byers, J. M., Clark, K. F., Thompson, G. C. (1998). Effect of pulsed electromagnetic stimulation on facial nerve regeneration. Arch. Otolaryngol. Head Neck Surg. 124:383–389
  • Cakir, D. U., Yokus, B., Akdag, M. Z., et al. (2009). Alterations of hematological variations in rats exposed to extremely low frequency magnetic fields (50 Hz). Arch. Med. Res. 40:352–356
  • De Pedro, J. A., Pérez-Caballer, A. J., Dominguez, J., et al. (2005). Pulsed electromagnetic fields induce peripheral nerve regeneration and endplate enzymatic changes. Bioelectromagnetics. 26:20–27
  • Duda, D., Sieroń, A. (2003). Wpływ magnetostymulacyjnego wolnozmiennego pola na krew in vitro. Acta Bio-Optica et Informatica Medica. 9:135–139
  • Greenebaum, B., Sisken, B. F. (2007). Does direction of induced electric field or current provide a test of mechanism involved in nerve regeneration? Bioelectromagnetics. 28:488–492
  • Güven, M., Günay, M., Özgünen, K., et al. (2005). Effect of pulsed magnetic field on regenerating rat sciatic nerve: An in vitro electrophysiologic study. Int. J. Neurosc. 115:881–892
  • Hinch, R., Lindsay, K. A., Noble, D., et al. (2005). The effects of static magnetic field on action potential propagation and excitation recovery in nerve. Prog. Biophys. Mol. Biol. 87:321–328
  • Ide, C. (1996). Peripheral nerve regeneration. Neurosci. Res. 25:101--121
  • Koch, C. L., Sommarin, M., Persson, B. R., et al. (2003). Interaction between weak, low frequency magnetic fields and cell membranes. Bioelectromagnetics. 24:395–402
  • Kuffler, D. P. (1994). Promoting and directing axon outgrowth. Mol. Neurobiol. 9:233–243
  • Lei, C., Berg, H. (1998). Electromagnetic window effects on proliferation rate of Corynebacterium glutamicum. Bioelectrochem. Bioenerg. 45:261–265
  • Lewin-Kowalik, J. (2002). Współczesne strategie badawcze w naprawie nerwów obwodowych. Neurol. Neurochir. Pol. 36:61–71
  • Macias, M. Y., Battocletti, J. H., Sutton, C. H., et al. (2000). Directed and enhanced neurite growth with pulsed electromagnetic field stimulation. Bioelectromagnetics. 21:272–286
  • Marino, A. A., Carrubba, S., Frilot, C., et al. (2009). Evidence that transduction of electromagnetic field is mediated by a force receptor. Neurosci. Lett. 452:119–123. [Epub 24 Jan 2009]
  • Mert, T., Gunay, I., Gocmen, C., et al. (2006). Regenerative effects of pulsed magnetic field on injured peripheral nerves. Altern. Ther. Health. Med. 12:42–49
  • Miyakoshi, F. (2006). Biological responses to extremely low-frequency electromagnetic fields. J. Dermatolog. Science Suppl. 2:23–30
  • Novikov, S. M., Maksimov, G. V., Volkov, V. V., et al. (2008). Effect of weak static magnetic fields on the excitability of a neuron. Biofizika. 53:519–523
  • Obo, M., Konishi, S., Otaka, Y., et al. (2002). Effect of magnetic field exposure on calcium channel currents using patch clamp technique. Bioelectromagnetics. 23:306–314
  • Öcal, I., Kalkan, T., Gunay, İ., et al. (2008). Effects of alternating magnetic field on the metabolism of the healthy and diabetic organisms. Braz. Arch. Biol. Technol. 51:523–530
  • Raji, A. R., Bowden, R. E. (1983). Effects of high-peak pulsed electromagnetic field on the degeneration and regeneration of the common peroneal nerve in rats. J. Bone Joint Surg. Br. 65:478–92
  • Rasband, M. N., Trimmer, J. S. (2001). Developmental clustering of ion channels at and near the node of Ranvier. Dev. Biol. Rev. 236:5–16
  • Roth, B. J., Basser, P. J. (1990). A model of the stimulation of a nerve fiber by electromagnetic induction. IEEE Trans. Biomed. Eng. 37:588–597
  • Rusovan, A., Kanje, M. (1991). Stimulation of regeneration of the rat sciatic nerve by 50 Hz sinusoidal magnetic fields. Exp. Neurol. 112:312–316
  • Scarlett, S. S., White, J. A., Blackmore, P. F., et al. (2009). Regulation of intracellular calcium concentration by nanosecond pulsed electric fields. Biochim. Biophys. Acta 1788:1168–1175
  • Shimada, Y., Sakuraba, T., Matsunaga, T., et al. (2006). Effects of therapeutic magnetic stimulation on acute muscle atrophy in rats after hindlimb suspension. Biomed. Res. 27:23–7
  • Sieroń, A., Cieślar, G. (2001). Wymogi bezpieczeństwa stosowania pół magnetycznych w medycynie. Biuletyn informacyjny Med&Life Polska. 6:24–26
  • Sieroń, A., Cieślar, G. (2003). Zastosowanie zmiennych pól magnetycznych w medycynie - 15- letnie badania własne. Wiadomości Lekarskie. 56:434–441
  • Sieroń, A., Sieroń-Stołtny, K., Mrugała-Przybyła, B. (2001). Aktualne spojrzenie na stosowanie pól magnetycznych w medycynie. Medica, Acta Bio-Optica et Informatica. 7:147–148
  • Sisken, B. F., Jacob, J. M., Walker, J. L. (1995). Acute treatment with pulsed electromagnetic fields and its effect on fast axonal transport in normal and regenerating nerve. J. Neurosci. Res. 42:692–699
  • Sisken, B. F., Kanje, M., Lundborg, G., et al. (1989). Stimulation of rat sciatic nerve regeneration with pulsed electromagnetic fields. Brain Res. 485:309–316
  • Walker, J. L., Evans, J. M., Resing, P., et al. (1994). Enhancement of functional recovery following a crush lesion to the rat sciatic nerve by exposure to pulsed electromagneticfields. Exp. Neurol. 125:302–305
  • Walker, J. L., Kryscio, R., Smith, J., et al. (2007). Electromagnetic field treatment of nerve crush injury in a rat model: effect of signal configuration on functional recovery. Bioelectromagnetics. 28:256–263
  • Ye, H., Cotic, M., Kang, E., et al. (2010). Transmembrane potential induced on the internal organelle by a time-varying magnetic field: a model study. J. Neuroeng. Rehabil. 7:7--12

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.