142

Bioelectromagnetism

Parker GH and van Heusen AP (1917): Te response of the catfsh, Amiurus Nebulosus, to metallic and

non-metallic rods. Amer J Physiol 44:405–420.

Persinger MA and Saroka KS (2015): Human quantitative electroencephalographic and Schumann reso­

nance exhibit real-time coherence of spectral power densities: implications for interactive infor­

mation processing. J Sig Inform Proces 6:153–164.

Perumpral JV, Earp UF and Stanley JM (1978): Efect of electrostatic feld on locational preference of

house fies and fight activities of cabbage loopers. Environ Entomol 7:482–486.

Petri AK, Shmeidchen K, Stunder D, et al. (2017): Biological bioefects of exposure to static electric felds

in humans and vertebrates: a systematic review. Environ Health 16:41.

Phillips JB and Borland SC (1992): Behavioural evidence for use of a light-dependent magnetoreception

mechanism by a vertebrates. Nature 359:142–144.

Price C (2016): ELF electromagnetic waves from lightning: the Schumann resonance. Atmosphere 7:116.

Price C, Williams E, Elhalel G and Sentman D (2021): Natural ELF felds in the atmosphere and in living

organisms. Inter J Biometeorol 65:85–92.

Reiter R (1992): Phenomena in Atmospheric and Environmental Electricity. Elsevier Science Publishers,

Amsterdam, London, New York, Tokyo.

Ritz T, Adem S and Schulten K (2000): A model for vison-based magnetoreception in birds. Biophys J

78:707–718.

Roberts AM (1969): Efect of electric felds on mice. Nature 223:639.

Romanenko S, Begley R, Harvey AR, Hool L and Wallace VP (2017): Te interaction between electro­

magnetic felds at megahertz, gigahertz and terahertz frequencies with cells, tissues and organ­

isms: risks and potential. J R Soc Interf 14:20170585.

Rycrof MJ, Nicoll KA, Aplin KL, et al. (2012): Recent advances in global electric circuit coupling between

the space environment and the troposphere. J Atmosp Solar-Terrestrial Phys 90–91:198–211.

Saroka KS, Vares DE and Persinger MA (2016): Similar spectral power densities within the Schumann

resonance and a large population of quantitative electroencephalographic profles: supportive evi­

dence for Köning and Pobachenko. PLoS One 11 (1):e0146595. Doi: 10.1371/journal.pone.0146595.

Schmiedchen K, Petri AK, Driessen S and Bailey WH (2018): Systematic review of biological efects of

exposure to static electric felds. Part II: Invertebrates and plants. Environ Res 160:60–76.

Schuà L (1954): Die Wirkung von lufelektrischen Feldern auf Tiere. Verh Dtsch Zool Ges 18:435–440.

Schumann WO (1952): Über die strahlungslosern Eigenschwingungen einer leitenden Kugel, die von

einer Lufschicht und einer Ionensphärenhülle umgeben ist. Z Naturforsch 7(A):149–154.

Schumann WO and König HL (1954): Über die Beobachtung von “atmospherics” bei geringsten

Frequenzen. Naturwissenschafen 41:183–184.

Semm P, Schneider T and Vollrath L (1980): Efects of an earth-strength magnetic feld on electric activ­

ity of pineal cells. Nature 288:607–608.

Shigemitsu T, Tsuchida Y, Nishiyama F et al. (1981): Temporal variation of the static electric feld inside

an animal cage. Bioelectromagnetics 2:1259–1300.

Sulman FG (1980): Te Efect of Air Ionization, Electric Fields, Atmospherics and Other Electric

Phenomena on Man and Animal. Charles C Tomas Publisher, Springfeld, IL.

Sutton GP, Clarke D, Morley EL and Robert D (2016): Mechanosensory hairs in bumblebees (Bombus

terrestris) detect weak electric felds. PNAS 113:7261–7265.

Tesla N (1905): Te transmission of electrical energy without wires as a means of furthering world peace.

Electr World Eng 7:21–24.

Tesla N (2015): Tesla Patent 787,412 Art of Transmitting Electrical Energy through the Natural Medium. In

Nikola Tesla Lectures & Patient, 655–660. Discovery Publisher, New York.

Timmel CR and Henbest KB (2004): A study of spin chemistry in weak magnetic felds. Phil Trans R.

Soc. Lond. A 362:2573–2589.

Toomey J and Polk C (1970): Research on Extremely Low Frequency Propagation with Particular Emphasis

on Schumann Resonance and Related Phenomena. Contract Nr AF 19 (628)-4950. University of

Rhode Island, Kingston, RI.