297

Geomagnetic Field Effects on Living Systems

Stoupel, E., Babayev, E.S., Mustafa, F.R., Abramson, E., Israelevich, P., and Sulkes, J. 2006. Clinical cos­

mobiology-sudden cardiac death and daily/monthly geomagnetic, cosmic ray and solar activity-

the Baku study (2003–2005). Sun Geosphere 1:13–16.

Stoupel, E., Kalediene, R., Petrauskiene, J., Starkuviene, S., Abramson, E., Israelevich, P., and Sulkes,

J. 2011. Twenty years study of solar, geomagnetic, cosmic ray activity links with monthly deaths

number (n-850304). Biomed Sci Eng 4(6):426–434.

Stoupel, E., Tamoshiunas, A., Radishauskas, R., Bernotiene, G., Abramson, E., and Israelevich, P. 2012.

Acute myocardial infarction (AMI) (n-11026) on days of zero geomagnetic activity (GMA) and the

following week: Diferences at months of maximal and minimal solar activity (SA) in solar cycles

23 and 24. J Basic Clin Physiol Pharmacol 23(1):5–9.

Stoupel, E., Babayev, E., Abramson, E., and Sulkes, J. 2013. Days of “Zero” level geomagnetic activity

accompanied by the high neutron activity and dynamics of some medical events: Antipodes to

geomagnetic storms. Health 5(5):855–861.

Suganuma, Y. 2020. Te geomagnetic reversal and “Chibanian” (written in Japanese). Blue Backs. B-2132.

Kodansha, Tokyo, Japan.

Suganuma, Y., Haneda, Y., Kameo, K., Kubota, Y., Hayashi, H., Itaki, T., Okuda, M., Head, M.J., Sugaya,

M., Nakazato, H., Igarashi, A., Shikoku, K., Hongo, M., Watanabe, M., Satoguchi, Y., Takeshita, Y.,

Nishida, N., Izumi, K., Kawamura, K., Kawamata, M., Okuno, J., Yoshida, T., Ogitsu, I., Yabusaki,

H., and Okada, M. 2018. Paleoclimatic and paleoceanographic records of Marine Isotope Stage

19 at the Chiba composite section, central Japan: A reference for the Early–Middle Pleistocene

boundary. Quat Sci Rev 191:406–430.

Suganuma, Y., Okada, M., Head, M.J., Kameo, K., Haneda, Y., Hayashi, H., Irizuki, T., Itaki, T., Izumi,

K., Kubota, Y., Nakazato, H., Nishida, N., Okuda, M., Satoguchi, Y., Simon, Q., and Takeshita,

Y. 2121. Formal ratifcation of the Global Boundary Stratotype Section and Point (GSSP) for the

Chibanian Stage and Middle Pleistocene Subseries of the Quaternary System: the Chiba Section,

Japan. Episodes 44(3):317–347.

Svensmark, H., 2006. Cosmic rays and the biosphere over 4 billion years. Astron Nachr 327:871–879.

Svensmark, H., and Friis-Christensen, E. 1997. Variation of cosmic rays fux and global cloud coverage:

A missing link in solar-climate relationships. J Atmos Sol Terr Phys 59:1225–1232.

Takebe, A., Furutani, T., Wada, T., Koinuma, M., Kubo, Y., Okano, K., and Okano, T. 2012. Zebrafsh

respond to the geomagnetic feld by bimodal and group-dependent orientation. Sci Rep 2:727.

Takeshita, Y., Matsushima, N., Teradaira, H., Uchiyama, T., and Kumai, H. 2016. A marker tephra bed

close to the lower-middle pleistocene boundary: Distribution of the Ontake-Byakubi Tephra Bed

in central Japan. Quat Int 397:27–38.

Tapping, K.F. 1987. Recent solar radio astronomy at centimeter wavelength: Te temporal variability of

the 10.7-cm fux. J Geophys Res 92(D1):829–838.

Tapping, K.F., Mathias, R.G., and Surkan, D.L. 2001. Infuenza pandemics and solar activity. Can J Infect

Dis 12:61–62.

Tarduno, J.A., Cottrell, R.D., Watkeys, M.K. and Bauch, D. 2007. Geomagnetic feld strength 3.2 billion

years ago recorded by single silicate crystals. Nature 446(7136):657–660.

Tarduno, J.A., Cottrell, R.D., Watkeys, M.K., Hofmann, A., Doubrovine, P.V., Mamajek, E., Liu, D.,

Sibeck, D.G., Neukirch, L.P., and Usui, Y. 2010. Geodynamo, solar wind and magnetopause 3.45

billion years ago. Science 327(5970):1238–1240.

Task Force of the European Society of Cardiology and the North American Society of Pacing and

Electrophysiology. 1996. Heart rate variability standards of measurement, physiological interpre­

tation, and clinical use. Circulation 93(5):1043–1065.

Tateno, S., Hirose, K., Ohishi, Y., and Tatsumi, Y. 2010. Te structure of iron in Earth’s inner core.

Science 330:359–361.

Tchijevsky, A.L. (de Smitt, V.P. translation). 1971. Physical factors of the historical process. Cycles

22:11–27.