内稳态与适应:个体发育中躯体植物相互作用的病理生理方面的研究

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这篇综述介绍了从Yuriy Petrovich Pushkarev教授的观点,关于血液循环和呼吸的躯体植物相互作用的 信息。这些数据说明了内稳态和适应问题的复杂性和通用性,以及许多问题的未解决性质,这些问题对于理解身体内部环境的稳定性和建立规范的边界很重要。研究表明,在人体的神经体液系统中,各种功能系统的组成部分不断地相互作用,以保证呼吸和血液循环的接口,并形成系统间的连接。在动物和人类在出生后的个体发生的功能形成的一些方面被考虑。内稳态是指体内指标的内部平衡,但其值由于中心点与周缘的功能整合而不断变化。获得有用的适应结果的过程具有生理指标的不对称性,系统间的相互作用保证了适应环境条件下内稳态常数的平衡。随着超过阈值的环境影响和内稳态参数的改变,为了维持一定水平的稳定状态,会发生补偿性和适应性反应,通过系统间连接的形成,消除或限制有害因素的作用,优化身体与环境的相互作用。对某些疾病和应激影响下机体功能改变的病理生理机制进行了分析。在Y.P.Pushkarev的思想背景下,进一步研究躯体植物相互作用,将揭示动物和人体内功能同步的真正机制,从而理解其作为一个独立的自我调节系统的存在。

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作者简介

A. Artemenkov

Cherepovets State University

编辑信件的主要联系方式.
Email: basis@live.ru

MD, Cand. Sci. (Med.), Associate Professor, Head, Theoretical Foundations of Physical Culture, Sports and Health

俄罗斯联邦, Cherepovets

参考

  1. Agadzhanjan NA, Konovalova GM, Ozheva RSh, Urakova TJu. Vozdejstvie vneshnih faktorov na formirovanie adaptacionnyh reakcij organizma cheloveka. Novye tehnologii. 2010;(2):142–144. (In Russ.)
  2. Anohin PK. Ocherki po fiziologii funkcional’nyh system. Moscow: Medicina; 2013. 447 p. (In Russ.)
  3. Artemenkov AA, Sinel’nikova EV. Soprjazhenie dyhanija i krovoobrashhenija kak pokazatel’ kompensatornyh vozmozhnostej organizma In: Biohimicheskie i biofizicheskie mehanizmy fiziologicheskih funkcij. Saint Petersburg, 1995. P. 14. (In Russ.)
  4. Artemenkov AA, Gerasimov AP, Sinel’nikova EV, Smirnov ON. Kojefficient bilateral’noj asimmetrii v ocenke jeffektivnosti mezhsistemnogo vzaimodejstvija. In: Trudy mezhvedomstvennogo nauchnogo soveta po jeksperimental’noj i prikladnoj fiziologii. Razvitie teorii funkcional’nyh sistem. Moscow: 1999. 360 p. (In Russ.)
  5. Artemenkov AA. The complex program of health improvement in students with deadaptation disorders. Russian Medical Journal. 2017;23(3):142–147. (In Russ.) doi: 10.18821/0869-2106-2017-23-3-142-147
  6. Artemenkov AA. Dezadaptivnye narushenija u cheloveka i ih kompensacija. Cherepovec: ChGU; 2018. 141 p. (In Russ.)
  7. Bilioz NV, Baranov VI, Bobrova YuV, et al. Intersystem integration and chemoresponsiveness of cardiorespiratory system in athletes according to their sports qualification. Ul’janovskij mediko-biologicheskij zhurnal. 2018;(3):140–152. (In Russ.) doi: 10.23648/UMBJ.2018.31.17224
  8. Vanjushin YuS, Hajrulin RR, Elistratov DE. Diagnostics of the functional state of athletes according to the indicators of the cardiorespiratory system. Vestnik ChGPU IJa Jakovleva. 2017;(1):12–17. (In Russ.)
  9. Gorizontov PD. Gomeostaz. Moscow: Medicina; 1976. 576 p. (In Russ.)
  10. Grechishkina SS, Shahanova AV, Dautov YuYu. The relationship of indicators of heart rate variability and external respiration of athletes with different orientation of the training process. Vestnik Adygejskogo gosudarstvennogo universiteta. Serija 4: Estestvenno-matematicheskie i tehnicheskie nauki. 2012;(1): 98–107. (In Russ.)
  11. Donina ZhA. Mezhsistemnye vzaimootnoshenija dyhanija i krovoobrashhenija. Fiziologija cheloveka. 2011;37(2):117–128. (In Russ.)
  12. Zabolotskih AI, Zabolotskih NV. Influence of the test of cardiorespiratory synchronism on the main parameters of central hemodynamics. Kuban Scientific Medical Bulletin. 2014;(5):52–55. (In Russ.) doi: 10.25207/1608-6228-2014-5-52-55
  13. Ivonin AA, Ciceroshin MN, Kucenko DO, et al. Characteristics of disturbances of intercortical and cortical-subcortical integration in various clinical forms of neurotic depression. Fiziologija cheloveka. 2008;34(6):10–22. (In Russ.)
  14. Kazakov VN. Gomeostaz. Soobshhenie 2. Homeostasis. Report 2. The organism and functions control necrologue in memory of Victor Yuryevich Nnikolenko guidelines for authors. Archives of clinical and experimental medicine. 2018;27(1):91–98. (In Russ.)
  15. Maslov YuS. Homeostasis is the main property of living organisms. Medicina XXI vek. 2007;(6):74–81. (In Russ.)
  16. Meerson FZ. Zashhitnye jeffekty adaptacii i nekotorye perspektivy razvitija adaptacionnoj mediciny. Uspehi Fiziologicheskih Nauk. 1991;22(2):52–89. (In Russ.)
  17. Minina EN, Bogach IN, Fajnzil’berg LS. Novye podhody k ocenke kardiorespiratornogo soprjazhenija. Problemy sovremennoj nauki i obrazovanija. 2015;11(41):70–75. (In Russ.)
  18. Minina EN, Lastoveckij AG. Expresses assessment of the risk heart disorders in the students using the phasometry of the ecg signal. Journal of New Medical Technologies. 2018;25(2):76–83. (In Russ.) doi: 10.24411/1609-2163-2018-16054
  19. Moshonkina TR, Minjaeva AV, Lobov GI, Gerasimenko YuP. Somato-visceral’nye vzaimodejstvija pri neinvazivnoj stimuljacii spinnogo mozga. In: Materialy XXIII s’’ezda fiziologicheskogo obshhestva im. IP. Pavlova s mezhdunarodnym uchastiem. Voronezh: Izd. ISTOKI; 2017. P. 1597–1599. (In Russ.)
  20. Natochin YuV. Homeostasis. Progress in Physiological Science. 2017;48(4):3–15. (In Russ.)
  21. Novosel’cev VN. Zdorov’e organizma i gomeostaz. Mezhdunarodnyj zhurnal prikladnyh i fundamental’nyh issledovanij. 2011;10(1):119–122. (In Russ.)
  22. Potjagajlo EG, Pokrovskij VM. Cardiorespiratory synchronism in assessing the functional state and regulatory and adaptive capabilities of the body in children. Fiziologija cheloveka. 2003;29(1):59–63. (In Russ.)
  23. Putrov SYu. O gomeostaze biologicheskogo organizma cheloveka kak naibolee zhelatel’nom rezhime funkcionirovanija sistemy. Aktual’nye problemy gumanitarnyh i estestvennyh nauk. 2015;(1):261–264. (In Russ.)
  24. Pushkarev YuP, Artemenkov AA, Gerasimov AP, et al. Kompensatorno-adaptacionnye vozmozhnosti organizma vzroslyh i detej. Proceedings of the International scientific and practical conference “Gigiena jekologija i reproduktivnoe zdorov’e podrostkov”; 1999 may 17–18; Saint Petersburg. SPbGPMA; 1999. P. 10–11. (In Russ.)
  25. Pushkarev YuP, Artemenkov AA, Gerasimov AP, Sinel’nokova EV. Stanovlenie sistemnyh mehanizmov adaptacii v ontogeneze. In: Optimizacija serdca i mozga nemedikomentoznymi metodami: materialy simpoziuma s mezhdunarodnym uchastiem. Tambov: TGU; 2000. P. 102–104. (In Russ.)
  26. Pushkarev YuP. Dynamics of somato–vegetative interaction in the ontogenesis of animals and humans. Pediatr. 2014;5(1):103–106. (In Russ.)
  27. Sizonov VA, Dmitrieva LE, Kuznecov SV. Somato-visceral intersystem interactions in newborn rat pups against the background of depression of motor activity. Zhurnal jevoljucionnoj biohimii i fiziologii. 2015;51(4):290–298. (In Russ.)
  28. Sudakov KV. Towards the theory of the unity of the material and the ideal in human activity. Human Being. 2011;1:70–75. (In Russ.)
  29. Sudakov KV, Dzhebrailova TD, Korobejnikova II. Geometric images of coherent relationships of the alpha rhythm of the electroencephalogram in the dynamics of the systemic productive activity of a person. Russian Journal of Physiology. 2011;97(6):580–589. (In Russ.)
  30. Sudakov KV. Holographic construction of integrative activity of the brain. Russian Academy of Sciences. Biological Series. 2012;1:61–71. (In Russ.)
  31. Tkachenko DS, Chub IS. The influence of physical activity on the tone of the cerebral vessels in students. Mezhdunarodnyj studencheskij nauchnyj vestnik. 2016;6:121. (In Russ.)
  32. Ust’janceva OJu. Peculiarities of reaction of central hemodynamics in elderly people with different level of physical fitness on short-term physical exertion with high proprioceptive activation. Aspiranskij vestnik povolzh’ja. 2014;14(5–6):23–25. (In Russ.)
  33. Chernysheva MP, Nozdrachev AD. Nonapeptide oxytocin: somatic and visceral functions in some psychopathologies. Psycho-Pharmacology Biologycal Narcology. 2009;9(3–4):2574–2590. (In Russ.)
  34. Chernysheva MP, Nozdrachev AD. Neuroendocrine hypothalamus as a homeostat of endogenous time. Zhurnal jevoljucionnoj biohimii i fiziologii. 2017;53(1):3–15. (In Russ.)
  35. Sheptikina TS, Sheptikin SA. Method for accelerated heart rate balance after exercise. Uchenye zapiski universiteta imeni PF Lesgafta. 2016;4:311–315. (In Russ.) doi: 10.5930/issn.1994-4683.2016.04.134.p311-315
  36. Ahn S, Solfest J, Rubchinsky LL. Fine temporal structure of cardiorespiratory synchronization. Am J Physiol Heart Circ Physiol. 2014;306(5):755–763. doi: 10.1152/ajpheart.00314.2013
  37. Ben-Tal A. Computational models for the study of heart-lung interactions in mammals. Wiley Interdiscip Rev Syst Biol Med. 2012;4(2):163–170. doi: 10.1002/wsbm.167
  38. Bonin von D, Grote V, Buri C, et al. Adaption of cardio-respiratory balance during day-rest compared to deep sleep – an indicator for quality of life? Psychiatry Res. 2014;219(3):638–644. doi: 10.1016/j.psychres.2014.06.004
  39. Chang CH, Lo PC. Effects of long-term dharma-chan meditation on cardiorespiratorysynchronization and heart rate variability behavior. Rejuvenation Res. 2013;16(2):115–123. doi: 10.1089/rej.2012.1363
  40. Clark MT, Rusin CG, Hudson JL, et al. Breath-by-breath analysis of cardiorespiratory interaction for quantifying developmental maturity in premature infants. J Appl Physiol (1985). 2012;112(5):859–867. doi: 10.1152/japplphysiol.01152.2011
  41. Jerath R, Harden K, Crawford M, et al. Role of cardiorespiratory synchronization and sleep physiology: effects on membrane potential in the restorative functions of sleep. Sleep Med. 2014;15(3):279–288. doi: 10.1016/j.sleep.2013.10.017
  42. Jerath R, Barnes VA, Crawford MW. Mind-body response and neurophysiological changes during stress and meditation: central role of homeostasis. J Biol Regul Homeost Agents. 2014;28(4):545–554.
  43. Koshova SP, Krut AH. Characteristics of stress resistance and adaptive potential in the training of doctors in the system of postgraduate education. Wiad Lek. 2018;71(7):1379–1384.
  44. Lin IM. Effects of a cardiorespiratory synchronization training mobile application on heart rate variability and electroencephalography in healthy adults. Int J Psychophysiol. 2018;134:168–177. doi: 10.1016/j.ijpsycho.2018.09.005
  45. Marakushin D, Chernobay L, Vasylieva O, Karmazina I. Intersystem integration in terms of the educational process in the initial courses of higher medical school. Georgian Med News. 2016;256–257: 88–92.
  46. Marino FE. The influence of thermal inputs on brain regulation of exercise: An evolutionary perspective. Prog Brain Res. 2018;240:269–289. doi: 10.1016/bs.pbr.2018.07.005
  47. Nguyen CD, Dakin C, Yuill M, et al. The effect of sigh on cardiorespiratory synchronization in healthy sleeping infants. Sleep. 2012;35(12):1643–1650. doi: 10.5665/sleep.2236
  48. Nose H, Kamijo YI, Masuki S. Interactions between body fluid homeostasis and thermoregulation in humans. Handb Clin Neurol. 2018;156:417–429. doi: 10.1016/B978-0-444-63912-7.00025-4
  49. Panossian A, Seo EJ, Efferth T. Novel molecular mechanisms for the adaptogenic effects of herbal extracts on isolated brain cells using systems biolo. Phytomedicine. 2018;50:257–284. doi: 10.1016/j.phymed.2018.09.204
  50. Uryga A, Placek MM, Wachel P, et al. Phase shift between respiratory oscillations in cerebral blood flow velocity and arterial blood pressure. Physiol Meas. 2017;38(2):310–324. doi: 10.1088/1361-6579/38/2/310
  51. Valenza G, Lanatà A, Scilingo EP. Oscillations of heart rate and respiration synchronize during affective visual stimulation. IEEE Trans Inf Technol Biomed. 2012;16(4): 683–690. doi: 10.1109/TITB.2012.2197632
  52. Xie L, Li M, Dang S, et al. Impaired cardiorespiratory coupling in young normotensives with a family history of hypertension. J Hypertens. 2018;36(11): 2157–2167. doi: 10.1097/HJH.0000000000001795
  53. Zhang J, Yu X, Xie D. Effects of mental tasks on the cardiorespiratory synchronization. Respir Physiol Neurobiol. 2010;170(1):91–95. doi: 10.1016/j.resp.2009.11.003
  54. Zhang Q, Patwardhan AR, Knapp CF, Evans JM. Cardiovascular and cardiorespiratory phase synchronization in normovolemic and hypovolemic humans. Eur J Appl Physiol. 2015;115(2):417–427. doi: 10.1007/s00421-014-3017-4
  55. Zhang Z, Wang B, Wu H, et al. Effects of slow and regular breathing exercise on cardiopulmonary coupling and blood pressure. Med Biol Eng Comput. 2017;55(2): 327–341. doi: 10.1007/s11517-016-1517-6

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