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Changes in Human Blood Microcirculation When Changing the Body Position (Exemplified by the Inhabitants of the Yaroslavl Region). P. 16–24

Версия для печати

Section: Physiology

UDC

612.135

Authors

Ol’ga A. Ovchinnikova*
*Yaroslavl State Pedagogical University named after K.D. Ushinsky (Yaroslavl, Russian Federation)

Abstract

Assessment of the regulation of blood supply to the skin and functional capacity of the microcirculation system is an important issue in human physiology. Changes in the body position are accompanied by redistribution of blood flow in the vascular bed and by adaptive response of the circulatory system. Peripheral blood flow takes place in the vessels of individual organs and tissues and provides adequate blood supply to them, adjusting to the constantly changing metabolic activity. We used Laser Doppler Flowmetry together with the wavelet analysis of the amplitude-frequency spectrum of microcirculatory fluctuations in a group of healthy volunteers of both sexes aged 23–30 years to evaluate the state of skin microcirculation and regulation mechanisms of tissue blood flow in sitting and lying subjects. During transition to horizontal position, the subjects showed reducing peak amplitudes of both active and passive factors of microcirculation control. These lower values of active range amplitudes when moving into a horizontal position indicate increasing rigidity of the vascular wall and growing microvasculature resistance. Reducing respiratory rate amplitudes observed in the lying position can be a sign of an improved venous outflow. Our findings indicate blood redistribution in the microvasculature and a greater involvement of neurogenic, myogenic and cardiac components of microcirculation modulation in the horizontal position. The breath-holding test revealed no significant differences in terms of microcirculation and indicated similar mechanisms of blood flow regulation at short-term hypoxia when changing the body position.

Keywords

blood microcirculation system, Laser Doppler Flowmetry, orthostatic stress, breath-holding test
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References

  1. C huyan E.N., Ananchenko M.N. Individual’no-tipologicheskie osobennosti protsessov mikrotsirkulyatsii: vliyanie nizkointensivnogo millimetrovogo izlucheniya [Individual Typological Features of Microcirculation Processes: The Influence of Low-Intensity Millimeter Radiation]. Uchenye zapiski Tavricheskogo natsional’nogo universiteta im. V.I. Vernadskogo. Ser.: Biologiya, khimiya, 2009, vol. 22, no. 4, pp. 236–254.
  2. Ananchenko M.N., Chuyan E.N. Kozhnaya mikrotsirkulyatsiya v usloviyakh funktsional’noy nagruzki u ispytuemykh s razlichnymi tipologicheskimi osobennostyami pod vliyaniem nizkointensivnogo millimetrovogo izlucheniya [Skin Microcirculation in the Functional Load of the Subjects with Different Typological Characteristics Under the Iinfluence of Low Intensity Millimeter Radiation]. Uchenye zapiski Tavricheskogo natsional’nogo universiteta im. V.I. Vernadskogo. Ser.: Biologiya, khimiya, 2011, vol. 24, no. 2, pp. 30–49.
  3. Wieling W., van Lieshout J.J., Hainsworth R. Extracellular Fluid Volume Expansion in Patients with Posturally Related Syncope. Clin. Auton. Res., 2002, vol. 12, no. 4, pp. 242–249.
  4. Robertson D. The Pathophysiology and Diagnosis of Orthostatic Hypotension. Clin. Auton. Res., 2008, vol. 18, suppl. 1, pp. 2–7.
  5. Stewart J.M. Common Syndromes of Orthostatic Intolerance. Pediatrics, 2013, vol. 131, no. 5, pp. 968–980.
  6. Kalinin S.Yu., Kalinina I.N., Dolgikh V.T. Osobennosti techeniya varikoznoy bolezni nizhnikh konechnostey u patsientov s razlichnym urovnem funktsionirovaniya serdechno-sosudistoy sistemy [Peculiarities of Lower Limb Varicosity in Patients with Various Levels of Functioning of the Cardiovascular System]. Angiologiya i sosudistaya khirurgiya, 2007, vol. 13, no. 2, pp. 84–87.
  7. Litvin F.B. Vozrastnye i individual’no-tipologicheskie osobennosti mikrotsirkulyatsii u mal’chikov, podrostkov i yunoshey [Age and Individual Typological Characteristics of Microcirculation in Boys, Adolescents and Young Men]. Regionarnoe krovoobrashchenie i mikrotsirkulyatsiya, 2006, vol. 5, no. 1, pp. 44–50.
  8. Gelman S. Venous Function and Central Venous Pressure: A Physiologic Story. Anesthesiology, 2008, vol. 108, no. 4, pp. 735–748.
  9. Golubev Yu.V., Tsarapkin L.V. Otsenka urovnya funktsional’nogo sostoyaniya studentov po dannym aktivnoy ortostaticheskoy proby [Evaluation of the Functional State of Students According to the Active Orthostatic Test]. Mezhdunarodnyy studencheskiy nauchnyy vestnik, 2015, no. 5-3, p. 381.
  10. Solov’eva S.V., Tsertsek T.N., Bakieva E.M., Trusevich N.V., Solov’ev V.S. Aktivnaya ortostaticheskaya proba u zdorovykh i bol’nykh arterial’noy gipertenziey i khronicheskoy obstruktivnoy bolezn’yu legkikh zhiteley goroda Surguta [Active Orthostatic Responses in Healthy Persons and AH and COPD Patients in Surgut]. Vestnik Tyumenskogo gosudarstvennogo universiteta. Mediko-biologicheskie nauki, 2014, no. 6, pp. 132–140.
  11. Astakhov A.A. Fiziologicheskie osnovy bioimpedansnogo monitoringa gemodinamiki v anesteziologii (s pomoshch’yu sistemy “Kentavr”) [Physiological Basis of Bioimpedance Hemodynamic Monitoring in Anesthesiology (Using the Kentavr System)]. Chelyabinsk, 1996. Vol. 2. 101 p.
  12. Lesova E.M., Samoylov V.O., Filippova E.B., Savokina O.V. Individual’nye razlichiya pokazateley gemodinamiki pri sochetanii gipoksicheskoy i ortostaticheskoy nagruzok [Individual Differences of Hemodynamics in Terms of Hypoxia and Orthostatic Stress]. Vestnik Rossiyskoy voenno-meditsinskoy akademii, 2015, no. 1, pp. 157–163.
  13. Krupatkin A.I., Sidorov V.V. Funktsional’naya diagnostika sostoyaniya mikrotsirkulyatorno-tkanevykh sistem. Kolebaniya, informatsiya, nelineynost’ [Functional Diagnostics of Microcirculatory and Tissue Systems. Fluctuations, Information, Non-Linearity]. Moscow, 2014. 498 p.
  14. Lazernaya dopplerovskaya fluometriya mikrotsirkulyatsii krovi [Laser Doppler Flowmetry of Blood Microcirculation]. Ed. by A.I. Krupatkin, V.V. Sidorov. Moscow, 2005. 256 p.
  15. Fedorovich A.A., Rogoza A.N., Boytsov S.A. Vzaimosvyaz’ funktsii arteriolyarnogo i venulyarnogo otdelov sosudistogo rusla s dilatatornym rezervom i parametrami tsentral’noy gemodinamiki [Correlation of the Arteriolar and Venule Segment Functions of the Vascular Bed with Dilatory Reserve and Central Hemodynamics Parameters]. Funktsional’naya diagnostika, 2009, no. 1, pp. 14–22.
  16. Sergienko V.I. Matematicheskaya statistika v klinicheskikh issledovaniyakh [Mathematical Statistics in Clinical Trials]. Moscow, 2006. 304 p.
  17. Afanas’ev V.V., Murav’ev A.V., Osetrov I.A., Mikhaylov P.V. Sportivnaya metrologiya [Sports Metrology]. Yaroslavl, 2009. 242 p.
  18. Binzoni T., Leung T.S., Rüfenacht D., Delpy D.T. Absorption and Scattering Coefficient Dependence of Laser- Doppler Flowmetry Models for Large Tissue Volumes. Phys. Med. Biol., 2006, vol. 51, no. 2, pp. 311–333.
  19. Tveritina E.S. Mekhanizmy regulyatsii krovotoka kozhi u lits raznykh vozrastnykh grupp [Mechanisms Regulating Blood Flow to the Skin in Various Age Groups]. Vestnik Severnogo (Arkticheskogo) federal’nogo univeriteta. Ser.: Mediko-biologicheskie nauki, 2014, no. 3, pp. 73–78.
  20. Murav’ev A.V., Tikhomirova I.A., Choporov S.V., Volkova E.L., Kislov N.V., Maymistova A.A., Kruglova E.V. Analiz izmeneniy deformiruemosti eritrotsitov v norme i pri patologii [Change Analysis of Erythrocyte Deformability Under Normal and Pathological Conditions]. Regionarnoe krovoobrashchenie i mikrotsirkulyatsiya, 2008, vol. 7, no. 4, pp. 47–52.
  21. Sarkisov K.G., Duzhak G.V. Lazernaya dopplerovskaya floumetriya kak metod otsenki sostoyaniya krovotoka v mikrososudakh [Laser-Doppler Flowmetry as a Method of Determining the Microcirculation Condition]. Metodologiya floumetrii [Flowmetry Methodology]. Moscow, 1999, pp. 9–14.
  22. Krupatkin A.I. Sistema perivaskulyarnoy innervatsii. Klinicheskaya neyroangiofiziologiya konechnostey (perivaskulyarnaya innervatsiya i nervnaya trofika) [Perivascular Innervation System. Clinical Neuroangiophysiology of Limbs (Perivascular Innervation and Nerve Trophism)]. Moscow, 2003. 328 p.
  23. Levtov V.A., Regirer S.A., Shadrina N.Kh. Reologiya krovi [Blood Rheology]. Moscow, 1982. 272 p.



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