PULSED MAGNETIC FIELD AS A MEANS OF INCREASING THE EFFICIENCY OF NORMOBARIC INTERVAL HYPOXIA TRAINING IN RATS
https://doi.org/10.33647/2074-5982-15-2-24-33
Abstract
This paper presents the results of investigations aimed at studying the combined effect of the course of moderate normobaric hypoxia (MNH) and pulsed magnetic field (PMF) on nonspecific resistance to acute hypoxia in rats. It is established that the combined application of MNH and PMF is followed by the effects of additivity, thus increasing the nonspecific resistance of rats to acute hypoxic hypoxia.
About the Authors
O. M. LabyntsevaRussian Federation
Cand. Sci. (Biol.),
607190, Russian Federation, Nizhny Novgorod region, Sarov, Pushkina str., 3
O. A. Zakharova
Russian Federation
Cand. Sci. (Biol.),
607190, Russian Federation, Nizhny Novgorod region, Sarov, Pushkina str., 3
Ju. E. Ananieva
Russian Federation
607190, Russian Federation, Nizhny Novgorod region, Sarov, Pushkina str., 3
E. G. Rokhmistrova
Russian Federation
607190, Russian Federation, Nizhny Novgorod region, Sarov, Pushkina str., 3
Ye. P. Lobkayeva
Russian Federation
Dr. Sci. (Biol.), Prof.,
607190, Russian Federation, Nizhny Novgorod region, Sarov, Pushkina str., 3
References
1. Abazova Z.Kh., Kolchinskaya A.Z., Kumykov V.K., Khatsukov B.Kh. Interval’naya gipoksicheskaya trenirovka v kurse lecheniya miopii [Interval hypoxic training in the treatment of myopia]. Vestnik novykh meditcinskikh tekhnologij [Bulletin of new medical technologies]. 2000;VII(2):87–89. (In Russian).
2. Ajdaraliev A.A. Fiziologicheskie mekhanizmy adaptacii i puti povysheniya rezistentnosti organizma k gipoksii [Physiological mechanisms of adaptation ways to increase the body’s resistance to hypoxia]. Frunze: Ilym, 1978. 190 p. (In Russian).
3. Ajratsetyan S.N., Ajratsetyan G.S., Sarkisyan M.A. O mekhanizmah dejstviya elektromagnitnyh voln nizkoj chastoty (EMV NCh) na vibraciyu kletki [On the mechanisms of action of low frequency electromagnetic waves (EMW LF) on cell vibration]. V kn.: Elektromagnitnye polya i zdorov’e cheloveka. Funkcional’nye i prikladnye issledovaniya: Mat-ly III Mezhd. konf. [In the book: Electromagnetic fields and human health. Functional and applied research: Materials of the III International Conference]. Moscow, 2002. P. 32. (In Russian).
4. Bajburina G.A., Nurgaleeva E.A., Shibkova D.Z., Bashkatov S.A. Processy lipoperoksidacii v pochkah posle ishemii-reperfuzii u krys s razlichnoj ustojchivost’yu k gipoksii [Processes of lipid peroxidation in the kidney after ischemia-reperfusion in rats with different resistance to hypoxia]. Fundamental’nye issledovaniya [Basic research]. 2015;(2 Pt. 8):1694–98. (In Russian).
5. Belyavskij N.N., Kuznetsov V.I., Likhachev S.A. Ispol’zovanie interval’noj normobaricheskoj gipoksiterapii dlya lecheniya i profilaktiki tranzitornykh tserebral’nykh ishemicheskikh atak [The use of interval normobaric hypoxytherapy for the treatment and prevention of transient cerebral ischemic attacks]. Meditsinskie novosti [Medical news]. 2006;(6):54–57. (In Russian).
6. Bratik A.V., Tsyganova T.N. Vozmozhnosti primeneniya normobaricheskoj interval’noj gipoksicheskoj trenirovki v vosstanovitel’noj korrektsii postmastektomicheskogo sindroma [The possibilities of using normobaric interval hypoxic training in the restorative correction of postmastectomy syndrome]. Vestnik novykh meditsinskikh tekhnologij [Bulletin of new medical technologies]. 2013;XX(1):80. (In Russian).
7. Glazachev O.S., Tkachuk E.N., Badikov V.I., Fedyanina N.G., El’-Yamani M.N. Vliyanie gipoksicheskikh trenirovok na zdorov’e shkol’nikov, prozhivayushchikh v ekologicheski neblagopriyatnykh regionakh [The effect of hypoxic training on the health of schoolchildren living in ecologically unfavorable regions]. Fiziologiya cheloveka [Human physiology]. 1996;22(1):88–93. (In Russian).
8. Glants S.M. Mediko-biologicheskaya statistika: Praktika [Biomedical statistics: Practice]. Moscow: Nauka, 1999. 459 p. (In Russian).
9. Darenskaya N.G., Korotkevich A.O. Nespetsificheskaya reaktivnost‘ organizma i printsipy formirovaniya individual‘noj rezistentnosti [Non-specific reactivity of the organism and the principles of the formation of individual resistance]. Moscow, 2001. 240 p. (In Russian).
10. Karkischenko V.N., Kapanadze G.D., Stankova N.V., Revyakin A.O., Matveyenko E.L., Kostogryzova R.G., Lyublinskiy S.L., Kolyshev I.Yu., Berzin I.A. Eksperimental’naya otsenka adaptogennoj aktivnosti novykh lekarstvennykh sredstv i veshchestv s ispol’zovaniem krupnykh laboratornykh zhivotnykh [Experimental evaluation of adaptogenic activity of new drugs and substances using large laboratory animals]. Biomedicine. 2012;(4):49–58. (In Russian).
11. Kolchinskaya A.Z. Kislorod. Fizicheskoe sostoyanie, rabotosposobnost‘ [Oxygen. Physical condition, performance]. Kiev: Naukova Dumka, 1991. 205 p. (In Russian).
12. Krylov V.N., Lobkaeva E.P., Oshevenskij L.V., Labyntseva O.M., Zakharova O.A., Fedotov V.N., Anan‘eva Yu.E., Rokhmistrova E.G. Vozmozhnost’ primeneniya impul’snogo magnitnogo polya v kachestve protektora povrezhdayushchego dejstviya gipoksii [The possibility of using a pulsed magnetic field as a protector of the damaging effect of hypoxia]. Biomedicine. 2018;3:90–100. (In Russian).
13. Lapach S.N., Chubenko A.V., Babich P.N. Statisticheskie metody v mediko-biologicheskikh issledovaniyakh s ispol‘zovaniem Excel [Statistical methods in biomedical research using Excel]. Kiev: Morion, 2000. 319 p. (In Russian).
14. Malkin V.B., Gippenrejter E.B. Ostraya i khronicheskaya gipoksiya [Acute and chronic hypoxia]. Moscow: Nauka, 1979. 240 p. (In Russian).
15. Meditsinskie laboratornye tekhnologii: Sprav., T. 2. [Medical laboratory technologies: Handbook, Vol. 2]. Ed. by Karpishchenko A.I. Saint-Petersburg: Intermedika, 1999. 512 p. (In Russian).
16. Meerson F.Z. Adaptatsionnaya meditsina: mekhanizmy i zashchitnye effekty adaptatscii [Adaptive medicine: mechanisms and protective effects of adaptation]. Moscow: Hypoxial Medical Ltd, 1993. 331 p. (In Russian).
17. Merkulova L.M. Morfofunktsional’nye reaktsii nervnoj tkani na vozdejstvie impul’snogo magnitnogo polya (IMP) [Morphofunctional reactions of the nervous tissue to the effects of a pulsed magnetic field (PMF)]. V kn.: Vliyanie elektromagnitnyh polej na organizm cheloveka: sb. nauch. st. [In the book: The influence of electromagnetic fields on the human body: a collection of scientific articles]. Moscow: Fond “Novoe tysyacheletie”, 1998. Pp. 94–119. (In Russian).
18. Nikolaeva A.G. Ispol‘zovanie adaptatsii k gipoksii v meditsine i sporte [The use of adaptation to hypoxia in medicine and sports]. Vitebsk: VGMU Publ., 2015. 150 p. (In Russian).
19. Preryvistaya normobaricheskaya gipoksoterapiya v genikologii, akusherstve i pediatrii: Metod. rekom. № 23 Кomiteta zdravoohraneniya g. Moskvy [Intermittent normobaric hypoxotherapy in gynecology, obstetrics and pediatrics: Guidelines No. 23 of the Moscow Healthcare Committee]. Moscow, 2002. (In Russian).
20. Razsolov N.A., Chizhov A.Ya., Potievskij B.G., Potievskaya V.I. Normobaricheskaya gipoksoterapiya: metod. rekom. dlya aviatsionnykh vrachej [Normobaric hypoxotherapy: guidelines for aviation doctors]. Moscow, 2002. 19 p. (In Russian).
21. Semenov Kh.Kh., Karkischenko N.N., Karkischenko V.N., Kapanadze G.D., Stepanova O.I., Kazakova L.Kh., Revyakin A.O., Kasinskaya N.V., Matveyenko E.L., Den’gina S.E., Fokin Yu.V. Vliyanie preparatov peptidnogo proiskhozhdeniya i ikh kombinatsij na ustojchivost’ krys k ostroj gipobaricheskoj gipoksii [The influence of drugs of peptide origin and their combinations on the resistance of rats to acute hypobaric hypoxia]. Biomedicine. 2012;4:45–48. (In Russian).
22. Sidyakin V.G., Stashkov A.M., Yanova N.P. Adaptatsionnye reaktsii organizma indutsirovannye dejstviem slabykh magnitnykh polej krajne nizkoj chastoty (KNCh) [Adaptive reactions of the body, induced by the action of weak magnetic fields of extremely low frequency (ELF)]. Uchenye zapiski Simferopol’skogo universiteta [Scientific notes of the Simferopol University]. 1996;(2):158–163. (In Russian).
23. Solodkov A.S., Ganapol’skij V.P., Yatmanov A.N., Shabanov P.D., Lopatina V.F. Farmakologicheskie preparaty, sposobstvuyushchie uskoreniyu adaptatsii sportsmenov v usloviyakh gornoj mestnosti [Pharmacological agents that accelerate the adaptation of athletes in the highlands]. Uchenye zapiski [Scholarly notes]. 2014;(11):142–148. (In Russian).
24. Ushakov I.B. Kombinirovannye vozdejstviya v ekologii cheloveka i ekstremal’noj meditsiny [Combined effects in human ecology and extreme medicine]. Moscow: IPTs “Izdattsentr”, 2003. 442 p. (In Russian).
25. Shustov E.B., Karkischenko N.N., Karkischenko V.N., Semenov Kh.Kh. Analiz parametrov individual’noj ustojchivosti laboratornykh zhivotnykh k gipoksii v interesakh biologicheskogo modelirovaniya nejroprotektornogo i antigipoksicheskogo dejstviya lekarstvennykh sredstv [Analysis of the parameters of individual resistance of laboratory animals to hypoxia in the interests of biological modeling of the neuroprotective and antihypoxic effects of drugs]. Biomedicine. 2013;(4):149–157. (In Russian).
26. Ejdi U.R. Kooperativnye mekhanizmy vospriimchivosti mozgovoj tkani k vneshnim i vnutrennim elektricheskim polyam [Cooperative mechanisms of susceptibility of brain tissue to external and internal electric fields]. Fiziologiya cheloveka [Human physiology]. 1975;1:59–68. (In Russian).
27. Yaremchuk G.N., Revenko S.N. Metod reabilitatsii lits, postradavshikh v rezul’tate avarii na Chernobyl’skoj AES [Method of rehabilitation of persons affected by the accident at the Chernobyl nuclear power plant]. V kn.: Traditsionnye i netraditsionnye metody ozdorovleniya detej: Tez. dokl. 6 Mezhd. konf. [In the book: Traditional and non-traditional methods of children’s health: Tez. report 6 Int. conf.]. Smolensk, 1997. P. 251. (In Russian).
Review
For citations:
Labyntseva O.M., Zakharova O.A., Ananieva J.E., Rokhmistrova E.G., Lobkayeva Ye.P. PULSED MAGNETIC FIELD AS A MEANS OF INCREASING THE EFFICIENCY OF NORMOBARIC INTERVAL HYPOXIA TRAINING IN RATS. Journal Biomed. 2019;(2):24-33. (In Russ.) https://doi.org/10.33647/2074-5982-15-2-24-33