92

Bioelectromagnetism

Cole KS and Curtis HJ (1941): Membrane potential of the squid axon during current fow. J Gen Physiol

24:551–563.

Cole KS and Cole RH (1941): Dispersion and absorption in dielectrics. I. Alternating current character­

istics. J Chem Phys 9:341–351.

Colwell HA (1922): An Essay on the History of Electrotherapy and Diagnosis. William Heinemann. Ltd,

London.

Cook HJ, Steneck NH, Vander AJ and Kane GL (1980): Early research on the biological efects of micro­

wave radiation: 1940–1960. Ann Sci. 37:323–351.

Cope M and Delpy DT (1988): System for long-term measurement of cerebral blood and tissue oxygen­

ation on newborn infants by near infrared transillumination. Med Biol Eng Comput 26:289–294.

Croat JJ, Herbst JF, Lee RW and Pinkerton FE (1984): Pr-Fe and Nd-Fe-based materials: A new class of

high-performance permanent magnets (invited). J Appl Phys 55:2078–2082.

Damadian R (1971): Tumor detetion by nuclear magnetic resonance. Science 171:1151–1153.

Deipolyi AR, Folberg A, Yarmush ML, et al (2014): Irreversible electroporation: evolution of a laboratory

technique in interventional oncology. Diagn Interv Radiol 20:147–154.

Delbourgo J (2006): A Most Amazing Scene of Wonders: Electricity and Enlightenment in Early America.

Harvard University Press, Cambridge, MA.

Della Porta G (1589): Natural Magick (Magiae Naturalis). Reproduction of original work with English

translation in 1658.

Delpy DT, Cope MC, Cady EB, et al. (1987): Cerebral monitoring in newborn infants by magnetic reso­

nance and near infrared spectroscopy. Scand J Clin Lab Invest 47 (Sup 188): 9–17.

Deschanel AP (1876): Elementary Treatise on Natural Philosophy Part 3. Electricity and Magnetism. Te

English revised edition (1884). D. Appleton and Company, New York.

Driessen S, Bodewein L, Dechent D, et al. (2020): Biological and health-related efects of weak static

magnetic felds (1 mT) in humans and vertebrates: A systematic review. PLoS One 15(6):e0230038.

Faghihi R, Zeinali-Rafsanjani B, Mosleh-Shirazi MA, et al. (2017): Magnetic resonance spectroscopy

and its clinical applications: a review. J Med Imaging Radiation Sci 48:233–253.

Faraday M (1821): Historical sketch of electro-magnetism. Ann Philos 2:195-200, 274–290.

Faraday M (1822): Historical sketch of electro-magnetism. Ann Philos 3:107–119.

Faraday M (1839): Experimental researches in electricity: ffeenth series: notice of the character and

direction of the electric force of the gymnotus. Philos Trans R Soc London 129:1–12.

Faraday M (1846): II. Experimental reseaerches in electricity; twentieth series: on new magnetic actions

and on the magnetic condition of all matter. Philos Trans R Soc London 136:21–40.

Faraday M (1847): LXIV. On the diamagnetic conditions of fame and gases. Te London, Edinburgh,

and Dublin Philos Magaz J Sci 31(210):401–421.

Feychting M and Ahlbom A (1993): Magnetic felds and cancer in children residing near Swedish high-

voltage power line. Am J Epidemiol 138:467–481.

Figuier L (1865): Les Grandes Inventions Anciennes et Modernes Dans les Sciences, l’Industrie et les Arts.

L.Hachett et Cie, Paris. p.262.

Finger S, Piccolino M and Stahnisch FW (2013a): Alexander von Humboldt: Galvanism, animal electric­

ity, and self-experimentation Part 1: Formative years, Naturphilosophie, and Galvanism. J History

Neurosci: Basic Clin Perspect 22:225–260.

Finger S, Piccolino M and Stahnisch FW (2013b): Alexander von Humboldt: Galvanism, animal electric­

ity, and self-experimentation Part 2: Te electric eel, animal electricity, and Later years. J History

Neurosci: Basic Clin Perspect 22:327–352.

Finsen NR (1899): Ueber die Anwendung von concentrirten Chemischen Lichtstrahlen in der Medicin.

Verlag von F.C.W.Vogel, Leipzig.

Fitzgerald PB (2014): Transcranial pulsed current stimulation: A new way forward? Clin Neurophysiol.

125:217–219.Fleming JA (1921): Fify Years of Electricity. Te Wireless Press, Ltd, London.