94

Bioelectromagnetism

Hart FX and Schottenfeld RS (1979): Evaporation and plant damage in electric felds. Int J Biometeorol

23:63–68.

Hashimoto U (1984): Kyu-rigen (Japanese Text). Reprint of original by Unsai Hashimoto. Ohmsha.

Hauf R (1974): Efects of 50 Hz alternating felds on man. Elektrotech. Z B26:318–320.

Hauf R (1976): Infuence of 50 Hz alternating electric and magnetic felds on human beings. Rev Gen

Elektr. Special Issue (July):31–49.

Haupt RC (1984): Letters from the editors: response from Haupt. Am J Public Health 74: 1042–1043.

Haupt RC and Nolf JR (1984): Te efects of high voltage transmission lines on the health of adjacent

resident populations. Am J Public Health 74:76–78.

Haygarth J (1800): Of the imagination, as a cause and cure of disorders of the body, exemplifed by fcti­

tious tractors, and epidemical convulsions. Ann Med (Edinb) 5:133–145.

Hermann L (1872): Ueber eine Wirkung galvanischer Ströme auf Muskeln und Nerven. Pfüger, Arch

5:223–275.

Hirota N, Honma T, Sugawara H, et al. (1995): Rise and fall of surface level of water solutions under high

magnetic feld. Jpn J Appl Phys 34:L991–L993.

Hodgkin AL and Huxley AF (1952a): Te components of membrane conductance in the giant axon of

Loligo. J Physiol (London) 116:473–496.

Hodgkin AL and Huxley AF (1952b): Currents carried by sodium and potassium ions through the mem­

brane of the giant axon of Loligo. J Physiol (London) 116:449–472.

Hodgkin AL and Huxley AF (1952c): Te dual efect of membrane potential on sodium conductance in

the giant of Loligo. J Physiol (London) 116:497–506.

Hodgkin AL and Huxley AF (1952d): A quantitative description of membrane current and its applica­

tion to conduction and excitation in nerve. J Physiol (London) 117:500–544.

Hodgkin AL, Huxley AF and Katz B (1952): Measurement of current-voltage relations in the giant axon

of Loligo. J Physiol (London) 116:424–448.

Höber R (1910): Eine Methode, die elektrische Leitfähigkeit im Innern von Zellen zu messen. Pfüg Arch

Phys 133:237–253

Höber R (1912): Eine zweites Verfahren die Leitfähigkeit im Innern von Zellen zu messen. Pfüg Arch

Phys 148:189–221.

Höber R (1913): Messungen der inner Leitfähigkeit von Zellen. Pfüg Arch Phys 150:15–45.

Hoshi Y and Tamura M (1993a): Detection of dynamic changes in cerebral oxygenation coupled to neu­

ronal function during mental work in man. Neurosci Lett 150:5–8.

Hoshi Y and Tamura M (1993b): Dynamic multichannel near-infrared optical imaging of human brain

activity. J Appl Physiol 75:1842–1846.

Humboldt A (1826): Ansichten der Natur. Nikol Verlag, Hamburg.

HUSCAP (Hokkaido University Collection of Scholarly and Academic Papers) (1980): Bukyokusi (in

Japanese). Bukyokusi. 1207–1250. http:hdl.handle.net/2115/29991.1980-03-20.

Huxley AF and Stämpfi R (1949): Evidence for salutatory conduction in peripheral myelinated nerve

fbers. J Physiol (London) 108:315–339.

IARC (2002): Non-Ionizing Radiation, Part 1: Satic and Extremely Low-Frequency (ELF) Electric and

Magnetic Fields. Vol 80. IARC Monographs on the Evaluation of Carcinogenic Risks to Humans.

International Agency for Research on Cancer, Lyon, France.

IARC (2013): Non-Ionizing Radiation, Part 2: Radiofrequency Electromagnetic Fields. Vol 102. IARC

Monographs on the Evaluation of Carcinogenic Risks to Humans. International Agency for

Research on Cancer, Lyon, France.

IARC Monographs Priorities Group (2019): Advisory group recommendations on priorities for the

IARC monographs. Lancet Oncol 20: 763–764.

ICNIRP (2003): Exposure to Static and Low Frequency Electromagnetic Fields, Biological Efects

and Health Consequences (0-100 kHz). (eds). Matthes R, Vecchia P, McKinlay AF, Veyret B and

Bernhardt JH. International Agency for Research on Non-Ionizing Radiation Protection, Munich.