Digital Spectral Analysis on the Plane of Complex Frequencies of Transients of the Heart Rhythm at Schoolchildren at Performing a Proof Test
DOI:
https://doi.org/10.14529/ctcr200116Keywords:
heart rate variability, Prony’s method, spectrum on the plane of complex frequencies, physiological signals, heart rhythm, parametric modelAbstract
Introduction. The method of processing experimental data obtained in the form of a timevarying non-stationary signal is described. In the experimental study of transients associated with changes in the heart rate of schoolchildren during a proof-reading test, it became necessary to develop a new effective method for processing the results of dynamic measurements. Purpose of the study. Consider the main points of this methodology, which is based on the Prony method, and the possibility of its use in the field of studies of changes in heart rate variability (HRV) in response to various functional test influences. Materials and methods. Traditional approaches related to the calculation of power spectral density (PSD) and based on classical spectral methods are currently very widespread. The model of constant rhythm is not applicable for non-stationary dependencies of HRV. For spectral analysis of time dependences of HRV reflecting transient processes (nonstationary processes) it is proposed to apply spectral analysis on the plane of complex frequencies (PCF). PCF is a generalization of the usual spectrum. The calculation of the PCF is based on the Prony procedure, based on parametric modeling. Results. PCF reflects the frequency structure of oscillations of unsteady physiological signals, therefore, can be used to classify them. It is shown that the use of spectral analysis on the plane of complex frequencies for transient processes of the heart rhythm makes it possible (according to the parameters of the PCF) to calculate, for diagnostic purposes, the numerical values of the parameters characterizing the reactions of various regulatory mechanisms of the heart rhythm in response to various functional test influences. Conclusion. The best results, as compared with the methods of classical spectral analysis, for the analysis of transients in the form of a HRV signal were given by approaches based on the use of spectral analysis on the plane of complex frequencies.
References
Baevskiy R.M. [Scientific and Theoretical Basis of Using Heart Rate Variability Analysis to Assess the Degree of Voltage of the Body's Regulatory Systems]. Tez. dokl. mezhdunar. simp. “Komp'yuternaya elektrokardiografiya na rubezhe stoletiy XX–XXI” [Proc. of Int. Simp. “Computer Electrocardiography at the Turn of the XX–XXI Centuries”]. Moscow, 1999, pp. 116–119. (in Russ.)
Baevskiy R.M., Berseneva A.P. Otsenka adaptatsionnykh vozmozhnostey organizma i risk razvitiya zabolevaniy [Assessment of the Adaptive Capabilities of the Body and the Risk of Developing Diseases]. Moscow, Medicine Publ., 1997, 233 p.
Dotsoev L.Ya., Usynin A.M., Vagner N.I., Tutatchikov A.T. [Functional State of Students 11–12 Years in Conditions of Intensive Training Loads According to the Analysis of Heart Rate Variability]. Human Physiology (RAN), 2003, vol. 29, no. 4, pp. 62–65 (in Russ.) DOI: 10.1023/A:1024977406829
Bezrukikh M.M. [School Risk Factors and Children's Health]. Manestr, 1999, no. 3, pp. 30–38. (in Russ.)
Veyn A.M., Ayrapetyants M.G., Haspekova N.B., Kuterman E.M., Kamenetskaya B.I. [Types of Heart Rhythm Reactions to Short-Term Loads and Their Connection with Psychophysical Personality Traits (Formalized Approach)]. Human Physiology, 1988, vol. 14, no. 26, p. 977. (in Russ.)
Marple Jr. S.L. Tsifrovoy spektral'nyy analiz i ego prilozheniya [Digital Spectral Analysis and Its Applications]. Moscow, World Publ., 1990, 584 p. (in Russ.)
Hayutin V.M., Lukoshkova E.V. [Spectral Analysis of Fluctuations in Heart Rate: Physiological Foundations and Its Complicating Phenomena]. Russian Physiological Journal I.N. Sechenova, 1999, vol. 85, no. 7, pp. 893–909. (in Russ.)
Svyatosh Y. [Analysis of Biological Signals in the Spectral Region]. Radio Electronics (News of Universities), 1996, vol. 39, no. 12, pp. 44–49. (in Russ.)
Ragozin A.N. [Informativeness of Spectral Indicators of Heart Rate Variability]. Bulletin of Arrhythmology, 2001, no. 22, pp. 38–40. (in Russ.)
Ragozin A.N., Kononov D.Yu., Usynin A.M., Mikhailov M.V. [A Computer Program to Assess the Functional State of High School Students]. Educational and Information Technology in Education, 2001, no. 4. Available at: https://journals.susu.ru/pit-edu/article/view/308/0. (in Russ.)
Ragozin A.N. [Computer Methods of Analyzing the Structure of Fluctuations in Heart Rate Variability]. Bulletin of the South Ural State University. Ser. Education, Health, Physical Culture, 2003, vol. 2, no. 5, pp. 194–195. (in Russ.)
Astakhov A.A., Ragozin A.N. [Compare Method Heart Variability (HRV) for Preanesthesia Control]. Proc. of 9th European Congress of Anesthesiology, Ierusalem, Israel, October 2–7, 1994.
Dotsoev L.Ya., Ragozin A.N., Usynin A.M., Astakhov A.A., Telezhkin V.F. [Study of Integrative Activity of the Heart and Blood Vessels Using Amplitude-Phase Frequency Characteristics]. Bulletin of Science and Education of Northwest Russia. Series “Applied Physics”, 2017, vol. 3, no. 3, pp. 1–15. Available at: http://vestnik-nauki. ru/2017-t-3-No3-2017-v-3-No3/. (in Russ.)
Astakhov S., Nenasheva A., Astakhov A., Ragozin A. [Heart Rate Variability and Photoplethysmogram Indicators in Assessment of Adaptation Levels in Students Experiencing Examination Loads]. Gazzetta Medica Italiana Archivio per le Scienze Mediche, 2018 March; 177 (3 Suppl 1): 1–8. DOI: 10.23736/S0393-3660.17.03722-6
Astakhov A.A., Ragozin A.N., Bubnova N.D., Govorov B.M. [Comparison of Absolute Values of the Five Parameters of Circulation, Their Variance, Spectral Analysis Data and Complex Frequencies in Healthy Young Men Alone]. Sbornik nauchnykh trudov simpoziuma “Medlennye kolebatel'nye protsessy v organizme cheloveka: teoriya, prakticheskoe primenenie v klinicheskoy meditsine i profilaktike” [Collection of Scientific Works of the Symposium “Slow Vibrational Processes in the Human Body: Theory, Practical Application in Clinical Medicine and Prevention”]. Novokuznetsk, 1999, pp. 23–33. (in Russ.)
Ragozin A.N. [Analysis of the Spectral Structure of Non-Stationary Physiological Signals on the Plane of Complex Frequencies]. Digital Electronic Systems (Electronic Journal), 1999–2000, no. 3, pp. 34–44. (in Russ.)
Ragozin A.N. [Identification of Low-Frequency Vibration Parameters VLF and ULF Ranges and Analysis of Transitions on 5-minute Heart Rate Recordings Using Spectral Analysis on the Plane of Complex Frequencies] Sb. nauchnykh trudov simpoziuma. “Kolebatel'nye protsessy gemodinamiki. Pul'satsiya i flyuktuatsiya serdechno-sosudistoy sistemy” [Scientific Work of the Symposium. “The Vibrational Processes of Hemodynamics. Pulse and Fluctuation of the Cardiovascular System”]. Chelyabinsk, 2002, pp. 300–307. (in Russ.)
Ragozin A.N. [Increased Reliability of the Assessment of the State of the Autonomic Nervous System by the Dynamics of the Heart Rate]. Sb. nauchnykh trudov simpoziuma “Kolebatel'nye protsessy gemodinamiki. Pul'satsiya i flyuktuatsiya serdechno-sosudistoy sistemy” [Scientific Work of the Symposium “The Vibrational Processes of Hemodynamics. Pulse and Fluctuation of the Cardiovascular System”]. Chelyabinsk, 2002, pp. 307–313. (in Russ.)
Ragozin A.N., Astakhov Al.A. [Analysis on the Plane of Complex Frequencies and Classical Spectral Analysis in Assessing the Structure of Heart Rate Fluctuations]. Bulletin of the South Ural State University. Ser. Education, Health, Physical Culture, 2009, vol. 21, no. 39, pp. 75–82. (in Russ.) DOI: 10.14529/ozfk09.39.16
Astakhov Al.A., Nagornaya A.S., Naumova V.V. [Regulation of Adaptation of Hemodynamics to Aging]. Modern Technology in Medicine, 2011, vol. 1, pp. 55–60. (in Russ.)
Ragozin. A.N. [Spectral Analysis of Heart Rate Variability on the Plane of Complex Frequencies]. Ural Cardiology Journal, 2000, no. 2, pp. 16–20. (in Russ.)
Shchelokova O.I. [Safety in Anesthesia, Intensive Care and Resuscitation]. Bulletin of the Council of Young Scientists and Specialists of Сhelyabinsk Region, 2014, no. 3 (Sept.), pp. 57–66. (in Russ.)
Astakhov A.A. Adaptatsionnyye protsessy gemodinamiki pri razlichnykh variantakh anestezii I intensivnoy terapii u patsiyentov otdeleniy reanimatsii. Dis. doktora meditsinskikh nauk [Adaptation Processes of Hemodynamics with Various Variants of Anesthesia and Intensive Care in Patients of Intensive Care Units. Doct. sci. diss.]. Ekaterinburg, 2012, 264 p.






