- Access by Xinjiang University
Micromagnetic insight into a magnetoreceptor in birds: Existence of magnetic field amplifiers in the beak
Phys. Rev. E 80, 041919 – Published 14 October, 2009
DOI: https://doi.org/10.1103/PhysRevE.80.041919
Abstract
The Earth’s magnetic field provides an important source of directional information for many living organisms, especially birds, but the sensory receptor responsible for magnetic field detection still has to be identified. Recently, magnetic iron oxide particles were detected in dendritic endings of the ophthalmic nerves in the skin of the upper beak of homing pigeons and were shown to fulfill the special prerequisites of a biological receptor. Here we study the proposed receptor theoretically and formulate the criteria for which it becomes operational and can be used for registering the weak magnetic fields as, e.g., the geomagnetic field, by a bird.
Article Text
References (67)
- W. Wiltschko and R. Wiltschko, J. Exp. Biol. 199, 29 (1996).
- R. Wiltschko and W. Wiltschko, Bioessays 28, 157 (2006).
- C. T. Rodgers and P. J. Hore, Proc. Natl. Acad. Sci. U.S.A. 106, 353 (2009).
- F. Merkel and W. Wiltschko, Vogelwarte 23, 71 (1965).
- W. Wiltschko and F. Merkel, Verh. Dtsch. Zool. Ges. 59, 362 (1966).
- H. Mouritsen and T. Ritz, Curr. Opin. Neurobiol. 15, 406 (2005).
- D. Heyers, M. Manns, H. Luksch, O. Güntürkün, and H. Mouritsen, PLoS ONE 2, e937 (2007).
- J. Lohmann and S. Johnson, Trends Neurosci. 23, 153 (2000).
- M. Freake, R. Muheim, and J. Philips, Q. Rev. Biol. 81, 327 (2006).
- S. Johnsen and K. J. Lohmann, Phys. Today 61 (3), 29 (2008).
- S. Begall, J. Červený, J. Neef, O. Vojtěch, and H. Burda, Proc. Natl. Acad. Sci. U.S.A. 105, 13451 (2008).
- I. A. Solov’yov, D. Chandler, and K. Schulten, Biophys. J. 92, 2711 (2007).
- T. Ritz, S. Adem, and K. Schulten, Biophys. J. 78, 707 (2000).
- I. A. Solov’yov, D. E. Chandler, and K. Schulten, Plant Signal. Behav. 3, 676 (2008).
- I. A. Solov’yov, Ph.D. dissertation, Johann-Wolfgang Goethe Universität, Frankfurt am Main, Deutschland, 2008.
- K. Maeda, K. B. Henbest, F. Cintolesi, I. Kuprov, C. T. Rodgers, P. A. Liddell, D. Gust, C. R. Timmel, and P. J. Hore, Nature (London) 453, 387 (2008).
- T. Ritz, R. Wiltschko, P. Hore, C. T. Rodgers, K. Stapput, P. Thalau, C. R. Timmel, and W. Wiltschko, Biophys. J. 96, 3451 (2009).
- I. A. Solov’yov and K. Schulten, Biophys. J. 96, 4804 (2009).
- M. Liedvogel, K. Maeda, K. Henbest, E. Schleicher, T. Simon, C. R. Timmel, P. Hore, and H. Mouritsen, PLoS ONE 2, e1106 (2007).
- F. Cintolesi, T. Ritz, C. Kay, C. Timmel, and P. Hore, Chem. Phys. 294, 385 (2003).
- O. Efimova and P. Hore, Biophys. J. 94, 1565 (2008).
- G. Fleissner, E. Holtkamp-Rötzler, M. Hanzlik, M. Winklhofer, G. Fleissner, N. Petersen, and W. Wiltschko, J. Comp. Neurol. 458, 350 (2003).
- G. Fleissner, B. Stahl, P. Thalau, G. Falkenberg, and G. Fleissner, Naturwissenschaften 94, 631 (2007).
- I. A. Solov’yov and W. Greiner, Biophys. J. 93, 1493 (2007).
- I. A. Solov’yov and W. Greiner, Eur. Phys. J. D 51, 161 (2009).
- I. A. Solov’yov and W. Greiner, in Latest Advances in Atomic Cluster Collisions: Structure and Dynamics from the Nuclear to the Biological Scale, edited by A. V. Solov’yov and J.-P. Connerade (Imperial College Press, London, 2008), pp. 377–388.
- B. Stahl, G. Fleissner, G. Falkenberg, and G. Fleissner, HAYLAB Annual Report, DESY, Hamburg, 2006, pp. 1289–1290 (unpublished).
- B. Stahl, G. Fleissner, G. Falkenberg, and G. Fleissner, in Proceedings of the Fourth Fall Conference on Metalloproteins and Metalloidproteins, edited by A. Kyriakopoulos, B. Michalke, A. Grabert, and D. Behne (Herbert Utz Verlag, München, 2006), pp. 63–68.
- B. Stahl, G. Fleissner, G. Falkenberg, and G. Fleissner, in Proceedings of the XAFS13 (American Institute of Physics, New York, 2007), Vol. 882, pp. 755–757.
- A. F. Davila, M. Winklhofer, V. P. Shcherbakov, and N. Petersen, Biophys. J. 89, 56 (2005).
- J. L. Kirschvink, M. M. Walker, and C. E. Diebel, Curr. Opin. Neurobiol. 11, 462 (2001).
- M. Hanzlik, C. Heunemann, E. Holtkamp-Rötzler, M. Winklhofer, N. Petersen, and G. Fleisner, Biometals 13, 325 (2000).
- G. Fleissner, G. Fleissner, B. Stahl, and G. Falkenberg, J. Ornithol. 148 (Suppl. 2), 643 (2007).
- W. Wiltschko and R. Wiltschko, J. Ornithol. 148 (Suppl. 1), 61 (2007).
- I. Solov’yov and W. Greiner, e-print arXiv:0704.1763 [physics.bio-ph].
- J. Kirschvink, D. Jones, and B. McFaden, Magnetite, Biomineralization and Magnetoreception in Organisms (Plenum, New York, 1985).
- T. Ritz, P. Thalau, J. B. Phillips, R. Wiltschko, and W. Wiltschko, Nature (London) 429, 177 (2004).
- K. Wang and T. Ritz, Mol. Phys. 104, 1649 (2006).
- M. Winklhofer, Modelle Hypotethischer Magnetfeldrezeptoren Auf der Grundlage Biogenen Magnetits (Verlag Merie Leidorf GmbH, Rahden, Westfallen, 1999), ISBN 3–89646–015–3.
- M. Winklhofer, Phys. Unserer Zeit 35, 120 (2004).
- V. Shcherbakov and M. Winklhofer, Eur. Biophys. J. 28, 380 (1999).
- M. Winklhofer, E. Holtkamp-Rötzler, M. Hanzlik, G. Fleissner, and N. Petersen, Eur. J. Mineral. 13, 659 (2001).
- J. B. William Fuller, Magnetostatic Principles in Ferromagnetism (North-Holland, Amsterdam, 1962).
- R. Hertel and H. Kronmüller, Phys. Rev. B 60, 7366 (1999).
- J. Fidler and T. Schrefl, J. Phys. D 33, R135 (2000).
- G. Krinchik, Physics of Magnetic Phenomena (Moscow University Press, Moscow, 1976).
- L. Landau, L. Pitaevskii, and E. Lifshitz, Electrodynamics of Continuous Media (Elsevier/Butterworth-Heinemann, New York/London, 1984).
- W. F. J. Brown, Micromagnetics (Wiley, New York, 1963).
- C. D. Stanciu, A. V. Kimel, F. Hansteen, A. Tsukamoto, A. Itoh, A. Kiriliyuk, and Th. Rasing, Phys. Rev. B 73, 220402(R) (2006).
- J. Fidler, T. Schrefl, W. Scholz, D. Suess, R. Dittrich, and M. Kirschner, J. Magn. Magn. Mater. 272-276, 641 (2004).
- M. J. Donahue and D. G. Porter, OOMMF User’s Guide, Version 1.0, NISTIR 6376 (National Institute of Standards and Technology, Gaithersburg, MD, 1999).
- A. Cabot, A. P. Alivisatos, V. F. Puntes, L. Balcells, O. Iglesias, and A. Labarta, Phys. Rev. B 79, 094419 (2009).
- H. Kachkachi, A. Ezzir, M. Nogues, and E. Tronc, Eur. Phys. J. B 14, 681 (2000).
- C. Johansson, M. Hanson, M. Pedersen, and S. Morup, J. Magn. Magn. Mater. 173, 5 (1997).
- R. Hergt, R. Hiergeist, I. Hilger, W. Kaiser, Y. Lapatnikov, S. Margel, and U. Richter, J. Magn. Magn. Mater. 270, 345 (2004).
- C. Hunt, B. Moskowitz, and S. Banerjee, Rock Physics and Phase Relations, A Handbook of Physical Constants (AGU Reference Shelf 3) (American Geophysical Union, Washington, DC, 1995), pp. 189–204.
- D. Horák, F. Lednický, E. Petrovský, and A. Kapička, Macromol. Mater. Eng. 289, 341 (2004).
- M. Winklhofer and J. L. Kirschvink, e-print arXiv:0805.2249.
- S. Xu and D. J. Dunlop, Geophys. Res. Lett. 23, 2819 (1996).
- L. Afremov and A. Panov, Phys. Metals Metall. 86, 269 (1998).
- S. Xu and D. J. Dunlop, J. Geophys. Res. 99, 9035 (1994).
- K. Fabian, A. Kirchner, W. Williams, F. Heider, T. Leibl, and A. Huber, Geophys. J. Int. 124, 89 (1996).
- R. F. Butler and S. K. Banerjee, J. Geophys. Res. 80, 4049 (1975).
- V. Solovyeva, K. Keller, and M. Huth, Thin Solid Films 517, 6671 (2009).
- C. Walcott, Animal Migration, Navigation, and Homing (Springer-Verlag, New York, 1978), pp. 143–151.
- T. Alerstam, J. Exp. Biol. 130, 63 (1987).
- A. Lednor and C. Walcott, Behav. Ecol. Sociobiol. 130, 3 (1988).