Electronic Scientific Journal
 
Diagnostics, Resource and Mechanics 
         of materials and structures
Рус/Eng  

 

advanced search

IssuesAbout the JournalAuthorContactsNewsRegistration

2017 Issue 3

All Issues
 
2024 Issue 1
 
2023 Issue 6
 
2023 Issue 5
 
2023 Issue 4
 
2023 Issue 3
 
2023 Issue 2
 
2023 Issue 1
 
2022 Issue 6
 
2022 Issue 5
 
2022 Issue 4
 
2022 Issue 3
 
2022 Issue 2
 
2022 Issue 1
 
2021 Issue 6
 
2021 Issue 5
 
2021 Issue 4
 
2021 Issue 3
 
2021 Issue 2
 
2021 Issue 1
 
2020 Issue 6
 
2020 Issue 5
 
2020 Issue 4
 
2020 Issue 3
 
2020 Issue 2
 
2020 Issue 1
 
2019 Issue 6
 
2019 Issue 5
 
2019 Issue 4
 
2019 Issue 3
 
2019 Issue 2
 
2019 Issue 1
 
2018 Issue 6
 
2018 Issue 5
 
2018 Issue 4
 
2018 Issue 3
 
2018 Issue 2
 
2018 Issue 1
 
2017 Issue 6
 
2017 Issue 5
 
2017 Issue 4
 
2017 Issue 3
 
2017 Issue 2
 
2017 Issue 1
 
2016 Issue 6
 
2016 Issue 5
 
2016 Issue 4
 
2016 Issue 3
 
2016 Issue 2
 
2016 Issue 1
 
2015 Issue 6
 
2015 Issue 5
 
2015 Issue 4
 
2015 Issue 3
 
2015 Issue 2
 
2015 Issue 1

 

 

 

 

 

V. A. Mironov, T. F. Mironova, A. N. Andreev

HIGH-RESOLUTION RHYTHMOCARDIOGRAPHY IN CLINICAL NEUROCARDIOLOGY

DOI: 10.17804/2410-9908.2017.3.023-035

The paper presents an innovative diagnostic computer complex for heart rate variability (HRV) analysis in clinical neurocardiology. It considers the advances and prospects of the application of high-resolution rhythmocardiography (RCG) in the practical medicine, as well as the already obtained results of RCG used in medicine to reveal HRV dysregulation in different nosological diseases.

Keywords: clinical neurocardiology, rhythmocardiography, advances, prospects

References:

  1. Antyufiev V.F., Mironova T.F., Mironov V.A. Disfunktsiya sinoatrialnogo uzla serdtsa [Sinoatrial Node Dysfunction]. Chelyabinsk, Rekpol Publ., 2009, 197 p. (In Russian).
  2. Voropaeva E.E. Samoproizvolnyi abort: etiopatogenez, klinilo-morfologicheskaya kharakteristika, reabilitatsiya: diss. dokt. med. nauk [Natural Abortion: Etiopathogenesis, Clinico-Morphological Characteristics, Rehabilitation. Doctoral Thesis]. 2011, 449 p. (In Russian).
  3. Davydova E.V. Zakonomernosti dizregulyatsiy peismeikernoy aktivnosti sinusovogo uzla serdtsa u bolnykh professionalnymi zabolevaniyami: diss. dokt. med. nauk [Regularities in the Dysregulations of the Pacemaker Activity of the Sinoatrial Node of Patients with Professional Diseases. Doctoral Thesis]. Irkutsk, 2011, 324 p. (In Russian).
  4. Zhemaitite D.I. Vegetative regulation and development of CHD complications. Fiziologiya Cheloveka, 1989, no. 15 (2), pp. 3–13. (In Russian).
  5. Kassil G.N. Vegetative regulation of internal environment homeostasis. In: Fiziologiya vegetativnoy nervnoy sistemy [Physiology of Vegetative Nervous System]. Leningrad, Nauka Publ., 1981, pp. 536–572. (In Russian).
  6. Kuvatov V.A., Mironov V.A., Bavykin M.V., Mironova T.F. Heart rate variability of CHD patients at CABG. Vestnik Udmurtskogo Universiteta. Seriya “Biologiya. Nauki o Zemle”, 2012, iss. 2, pp. 68–78. (In Russian).
  7. Mironova T.F., Mironov V.A. Variabelnost serdechnogo ritma pri ishemicheskoy bolezni serdtsa [Heart Rate Variability at Coronary Heart Disease]. Chelyabinsk, Rekpol Publ., 2008, 173 p. (In Russian).
  8. Mironova T.F., Mironov V.A. Klinicheskiy analiz volnovoy struktury sinusovogo ritma serdtsa. [Clinical Analysis of the Wave Structure of the Sinoatrial Rate]. Chelyabinsk, Chelyabinskiy Rabochiy Publ., 1998, 162 p. (In Russian).
  9. Mironova T.F. Dizregulyatornye vegetativnye rasstroistva kardiovaskulyarnoy sistemy v klinike i patogeneze vibratsionnoy bolezni: diss. dokt. med. nauk [Dysregulatory Vegetative Cardiovascular System Disorders in the Clinical Picture and Pathogenesis of Vibration Disease. Doctoral Thesis]. St. Petersburg, 1990, 507 p. (In Russian).
  10. Mironov V.A. Klinicheskiy analiz volnovoy struktury sinusovogo ritma serdtsa pri gipertonicheskoy bolezni: avtoref. dis. dokt. med. nauk [Clinical Analysis of the Wave Structure of the Sinoatrial Rhythm at Arterial Hypertension. Doctoral Thesis Abstract]. Orenburg, 1999, 54 p. (In Russian).
  11. Mironov V.A. Ritmokardiograficheskoe issledovanie perifericheskoy vegetativnoy regulyatsii peismeikernoy aktivnosti sinusovogo uzla pri ishemicheskoy bolezni serdtsa: dis. kand. med. nauk [Rhythmo-Cardiographic Study of the Peripheral Vegetative Regulation of the Sinoatrial Node Pacemaker Activity at Coronary Heart Disease. Cand. Thesis]. Celyabinsk, 2002, 137 p. (In Russian).
  12. Sadyrin A.V. Immunologicheskie i vegetativnye narusheniya u bolnykh s tserebralnymi opukholyami pri luchevoy terapii: dis. kand. med. nauk [Immunological and Vegetative Disorders in Cerebral Tumor Patients during Radiotherapy. Cand. Thesis], Chelyabinsk, 2008, 208 p. (In Russian).
  13. Solovieva O.V. Osobennosti perifericheskoy vegetativnoy regulyatsii sinusovogo uzla serdtsa u bolnykh sistemnoy krasnoy volchankoy: diss. kand. med. nauk [Specific Features of Peripheral Vegetative Regulation of the Sinoatrial Node in Patients with Systemic Lupus Erythematosus. Cand. Thesis], Perm, 2011, 144 p. (In Russian).
  14. Tyurin A.Yu. Osobennosti perifericheskoy vegetativnoy regulyatsii peismeikernoy aktivnosti sinusovogo uzla serdtsa u bolnykh s ostrym infarktom miokarda: diss. kand. med. nauk [Specific Features of Peripheral Vegetative Regulation of the Sinoatrial Node Pacemaker Activity in Patients with Acute Myocardial Infarction. Cand. Thesis], Perm, 2005, 160 p. (In Russian).
  15. Shadrina I.M. Perifericheskie vegetativnye effecty nebivolola i bisoprolola po dannym analiza volnovoy variabelnosti serdechnogo ritma pri gipertonicheskoy bolezni: dis. kand. med. nauk [Peripheral Vegetative Effects of Nebivolol and Bisoprolol According to the Analysis of Heart Rate Wave Variability at Arterial Hypertension. Cand. Thesis], Chelyabinsk, 2010, 178 p. (In Russian).
  16. Akselrod S. Components of heart rate variability. Basic studies. In: Heart Rate Variability, M. Malik, A.J. Camm, eds., Armonk, NY, Futura Publishing Company Inc., 1995, pp. 147–163.
  17. Baselli G., Cerutti S., Civardi S., Liberati D., Lombardi F., Malliani A., Pagani M. Spectral and cross-spectral analysis of heart rate and arterial blood pressure variability signals. Comp. Biomed. Res., 1986, vol. 19, pp. 520–534.
  18. Bosner M.S., Kleiger R.E. Heart rate variability and risk stratification after myocardial infarction. In: Heart Rate Variability, M. Malik, A.J. Camm, eds., NY, Futura Publishing Company Inc., 1995, pp. 331–340.
  19. Brown D.R., Randall D.C., Knapp C.F., Lee K.C., Yingling J.D. Stability of the heart rate power spectrum over time in the conscious dog. FASEB J, 1989, vol. 3, no. 5, pp. 1644–1650.
  20. Camm A.J. Risk stratification following myocardial infarction: heart rate variability and other risk factors. Heart Rate Variability, M. Malik, A.J. Camm, eds., Armonk, NY, Futura Publishing Company Inc., 1995, pp. 369–392.
  21. Chess G.F., Tam R.M.K., Calaresu F.R. Influence of cardiac inputs on rhythmic variations of heart period in the cat. Am. J. Physiol., 1975, vol. 220, no. 3, p. 775–780.
  22. Fei L., Copie X., Malik M., Camm A.J. Short- and long-term assessment of heart rate variability for risk stratification after acute myocardial infarction. Am. J. Cardiol., 1996, vol. 77, pp. 681–684.
  23. Furlan R., Guzzetti S., Crivellaro W., Dassi S., Tinelli M., Baselli G., Cerutti S., Lombardi F., Pagani M., Malliani A. Continuous 24-hour assessment of the neural regulation of systemic arterial pressure and RR variabilities in ambulant subjects. Circulation, 1990, vol. 81, pp. 537–547. DOI: 10.1161/01.CIR.81.2.537.
  24. Hainsworth R. The control and physiological importance of heart rate. In: Heart Rate Variability, M. Malik, A.J. Camm, eds., Armonk, NY, Futura Publishing Company Inc., 1995, pp. 21–30.
  25. Kautzner J., Fiala M., Hnatkova K. et al. Influence of autonomic modulation of the atrioventricular junction on the heart rate variability measured from R-R intervals. In: Abstracts of XIX Congress of the ESC, Stockholm, Sweden, 1997, pp. 731.
  26. Kitney R.J., Rompelman O. The study of Heart Rate Variability, Oxford, England, Claredon Press, 1980.
  27. Kleiger Robert E., Miller J.Philip, Bigger Jr. J.Thomas, Moss Arthur J. Decreased heart rate variability and its association with increased mortality after acute myocardial infarction. Am. J. Cardiol., 1987, vol. 59, pp. 256–262. DOI: 10.1016/0002-9149(87)90795-8.
  28. Kleiger R.E, Stein P.K, Bosner M.S, Rottman J.N. Time domain measurements of heart rate variability. Cardiology clinics, 1992, vol. 10, no. 3, pp. 487–98.
  29. Levy M.N. Sympathetic-parasympathetic interactions in the heart. Circ. Res., 1971, vol. 29, pp. 437–445.
  30. Malik M., Camm A.J. Preface. In: Heart Rate Variability, M. Malik, A.J. Camm, eds., Armonk , NY, Futura Publishing Company Inc., 1995, p. IX.
  31. Wall P.D., Melzack R. Visceral versus somatic mechanisms. In: Textbook of Pain, A. Malliani, M. Pagani, F. Lombardi, eds., 2nd ed., Churchill Livingstone, Edinburgh, 1989, pp. 128–140.
  32. Malliani A., Pagani M. , Lombardi F., Cerutti S. Cardiovascular neural regulation explored in the frequency domain. Circulation, 1991, vol. 84, pp. 482–492. DOI: 10.1161/01.CIR.84.2.482.
  33. Malliani A. Association of heart rate variability components with physiological regulatory mechanisms. In: Heart Rate Variability, M. Malik, A.J. Camm, eds., Armonk, NY, Futura Publishing Company Inc., 1995, pp. 173–188.
  34. Maliani A. Physiological interpretation of the spectral components of heart rate variability (HRV). Vestnik Aritmologii, 1998, no. 9, pp. 7–57. (In Russian).
  35. Mancia G., Grassi G., Parati G., Daffonchio A. Evaluating sympathetic activity in human hypertension. J. Hypertens., 1993, vol. 11 (Suppl. 5), pp. S13–S19.
  36. Mironova T., Mironov V. Clinical Analysis of Heart Rate Variability, Chelyabinsk, 2000, 208 p. (In Russian).
  37. Mironov V., Mironova T. Practical Russian experience of using complex apparatus and programs for analysis of heart rate variability. In: The World Congress on Computers in Cardiology, Vienna, Austria, IEEE, Chicago, USA, 1995, pp. 460–472.
  38. Pagani M., Lombardi F., Guzzetti S., Rimoldi O., Furlan R., Pizzinelli P, Sandrone G., Malfatto G., Dell'Orto S., Piccaluga E. Power spectral analysis of heart rate and arterial pressure variabilities as a marker of sympatho-vagal interaction in man and conscious dog. Circulation Research, 1986, vol. 59, pp. 178–193. DOI: 10.1161/01.RES.59.2.178.
  39. Pagani M., Lucini D., Rimoldi O., Furlan R., Piazza S., Biancardi L.Effect of physical and mental exercise on heart rate variability. In: Heart Rate Variability, M. Malik, A.J. Camm, eds., Armonk, NY, Futura Publishing Company Inc., 1995, pp. 245–266.
  40. Penaz J., Roukenz J., Van der Waal H.J. Spectral analysis of some spontaneous rhythms in the circulation. In: Biokybernetic, H. Drischel, N. Tiedt, eds., Leipzig, 1968, pp. 1–233.
  41. Penaz J., Honzikova N., Fizer B. Spectral analysis of resting variability of some circulatory parameters in men. Physiologia Bohemoslovaca, 1978, vol. 27, pp. 349–357.
  42. Rimoldi O., Pierini S., Ferrari A., Cerutti S., Pagani M., Malliani A. Analysis of short-term oscillations of R-R and arterial pressure in conscious dog. Am. J. Physiol., 1990, vol. 258, no. 4, pp. H967–H976.
  43. Sayers B.M. Analysis of heart rate variability. Ergonomics, 1973, vol. 16, iss. 1, pp. 17–32. DOI: 10.1080/00140137308924479.
  44. Smyth H.S., Sleight P., Pickering G.W. Reflex regulation of arterial pressure during sleep in men. A quantitative method of assessing baroreflex sensitivity. Circ. Res., 1969, vol. 24, pp. 109–121.
  45. Schwartz P.J., De Ferrari G.M. Interventions changing heart rate variability after acute myocardial infarction. In: Heart rate variability, M. Malik, A.J. Camm, eds., Armonk, NY, Futura Publishing Co., 1995, pp. 407–420.
  46. Heart rate variability: standards of measurement, physiological interpretation and clinical use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. Circulation, 1996, vol. 93, pp. 1043–1065.
  47. Warner H.R., Cox A. A mathematical model of heart rate control by sympathetic and vagus efferent information. J. Appl. Physiol., 1962, vol. 17, pp. 349–355.
  48. Zemaityte D., Kesaite R., Varoneckas G. Automic heart control evaluation using longterm recording of RR-intervals. In: Mezhdunarodnyi Simpozium "Kompyuternaya Electrokardiografiya na Rubezhe Stoletiy": tezisy dokladov [International Symposium on Computer Electrocardiography at the Turn of the Centuries, Moscow, April 27-30, 1999.]. М., Kruk Publ., 1999, pp. 120–124. (In Russian).


PDF      

Article reference

Mironov V. A., Mironova T. F., Andreev A. N. High-Resolution Rhythmocardiography in Clinical Neurocardiology // Diagnostics, Resource and Mechanics of materials and structures. - 2017. - Iss. 3. - P. 23-35. -
DOI: 10.17804/2410-9908.2017.3.023-035. -
URL: http://eng.dream-journal.org/issues/2017-3/2017-3_141.html
(accessed: 04/25/2024).

 

impact factor
RSCI 0.42

 

MRDMS 2024
Google Scholar


NLR

 

Founder:  Institute of Engineering Science, Russian Academy of Sciences (Ural Branch)
Chief Editor:  S.V. Smirnov
When citing, it is obligatory that you refer to the Journal. Reproduction in electronic or other periodicals without permission of the Editorial Board is prohibited. The materials published in the Journal may be used only for non-profit purposes.
Contacts  
 
Home E-mail 0+
 

ISSN 2410-9908 Registration SMI Эл № ФС77-57355 dated March 24, 2014 © IMACH of RAS (UB) 2014-2024, www.imach.uran.ru