Theoretical evaluation and analysis of distribution of internal currents induced by low frequency electromagnetic fields in the model of biological tissues Publication 1. Homogenous phantoms

Authors

  • М. Ю. Готовский Center of intellectual medical systems «IMEDIS» (Moscow, Russia)
  • С. Ю. Перов RAMS Research institute of occupational health (Moscow, Russia)

Keywords:

theoretical dosimetry, low-frequency electromagnetic fields, homogenous model of muscle, homogenous model of fat, homogenous model of bone, internal currents

Abstract

Results of theoretical evaluation of distribution of internal currents induced by alternating electromagnetic fields in homogenous phantoms of muscle, fat and bone tissue using SEMCAD X software are presented. The perspective of using the method of theoretical dosimetry to study and optimize the therapeutic use of alternating magnetic fields is shown.

Author Biographies

М. Ю. Готовский, Center of intellectual medical systems «IMEDIS» (Moscow, Russia)

M.Yu. Gotovskiy

С. Ю. Перов, RAMS Research institute of occupational health (Moscow, Russia)

S.Yu. Perov

References

1. Улащик В.С. Очерки общей физиотерапии. - Мн.: Навука i тэхнiка, 1994.<BR>2. Боголюбов В.М., Пономаренко Г.Н. Общая физиотерапия. - М.: Медицина, 2003.<BR>3. Системы комплексной электромагнитотерапии / Под ред. А.М. Беркутова, В.И. Жулева, Г.А. Кураева, Е.М. Прошина. - М.: Лаборатория базовых знаний, 2000.<BR>4. Пономаренко Г.Н., Турковский И.И. Биофизические основы физиотерапии. - М.: Медицина, 2006.<BR>5. Lovsung P., Oberg P.A., Nilsson S.E.G., Reuter T. Magnetophosphenus: A quantitative analysis of thresholds // Med. Biol. Eng. Comput. - 1980. - V.18, N.3. - P. 326-334.<BR>6. Готовский М.Ю., Перов С.Ю. Возможности использования численных методов теоретической дозиметрии в импульсной магнитотерапии // Традиционная медицина. - 2010. - №2. - С. 4-8.<BR>7. Кузнецов А.Н. Биофизика низкочастотных электромагнитных воздействий. - М.: МФТИ, 1994.<BR>8. ICNIRP Guidelines / Guidelines for limiting exposure to time-varing electric, magnetic, and electromagnetic fields (up to 300 GHz) // Health Physics - 1998. - V.74, N.4. - P. 494-522.<BR>9. Hagmann M.J., Babij T.M. Non?invasive measurement of current in the human body for electromagnetic dosimetry // IEEE Trans. Biomed. Eng. 1993. - V.40, N.5. - P. 418-423.<BR>10. http://www.speag.com/<BR>11. http://niremf.ifac.cnr.it/tissprop/htmlclie/htmlclie.htm<BR>12. Stuchly M.A., Dawson T.W. Interaction of low-frequency electric and magnetic fields with the human body // Proc. IEEE. - 2000. - V.88, N.5. - P.643-664.<BR>13. Schwan H.P. Dielectric properties of biological tissue and biophysical mechanisms of electromagnetic-field interaction // Biological Effects of Nonionizing Radiation. ACS Symposium Series. - 1981. - V.157, ch.8. - P. 109-131.<BR>

Published

2012-03-30

How to Cite

Готовский, М. Ю., and С. Ю. Перов. “Theoretical Evaluation and Analysis of Distribution of Internal Currents Induced by Low Frequency Electromagnetic Fields in the Model of Biological tissues Publication 1. Homogenous Phantoms”. Traditional Medicine, no. 1(28) 2012, Mar. 2012, pp. 4-9, http://www.tradmed.ru/index.php/tm/article/view/279.

Issue

Section

Bioresonance therapy

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