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Published in: European Journal of Applied Physiology 5-6/2005

01-12-2005 | Original Article

Spectral characteristics of heart rate fluctuations during parabolic flight

Authors: Bart Verheyden, Frank Beckers, André E. Aubert

Published in: European Journal of Applied Physiology | Issue 5-6/2005

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Abstract

Parabolic flight is used to create short successive periods of changing gravity in a range between 0 and 1.8 Gz (1 Gz: 9.81 m/s2). The purpose of the present study was to evaluate whether cyclic variations in heart rate during ±20 s periods of stable gravity in parabolic flight reflect autonomic modulation of cardiac chronotropy. During the 29th and 32nd ESA parabolic flight campaign ECG and respiration were recorded in 13 healthy volunteers in both standing and supine postures. We developed and validated a spectral algorithm especially adapted to study frequency components of heart rate among ultrashort (±20 s) stable gravity periods of parabolic flight. A low frequency (LF) component, starting from the lowest measurable frequency (±0.05 Hz) up to 0.15 Hz was distinguished from a high frequency (HF) component, ranging from 0.16 Hz up to 0.4 Hz. Powers were calculated by integration between corresponding limits and represented in normalized units (nu). With our method, we were able to reproduce normal findings in the upright posture at 1 Gz, i.e., less power in the HF component compared to supine (HFnu: 0.18±0.09 vs. 0.40±0.16). These postural related differences are shown to be eliminated at 0 Gz (HFnu: 0.30±0.12 vs. 0.32±0.13) and amplified at 1.8 Gz phases (HFnu: 0.15±0.10 vs. 0.39±0.16) of parabolic flight. In the supine position no coherent differences were shown in the measured variables among different gravity phases. Our observations strongly indicate that spectral characteristics of heart rate fluctuations among stable gravity periods of parabolic flight reflect parasympathetic nervous system control of cardiac chronotropy. At 1 Gz, there is a normal upright situation with less parasympathetic modulation of heart rate compared to supine. This effect is augmented during 1.8 Gz-conditions due to a suppressed parasympathetic control of heart rate in the upright posture. Alternatively, at 0 Gz, increased parasympathetic control in standing position eliminates differences in cardiac chronotropy compared to supine.
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Literature
go back to reference Akselrod S, Gordon D, Ubel FA, Shannon DC, Berger AC, Cohen RJ (1981) Power spectrum analysis of heart rate fluctuation: a quantitative probe of beat-to-beat cardiovascular control. Science 213:220–222PubMedCrossRef Akselrod S, Gordon D, Ubel FA, Shannon DC, Berger AC, Cohen RJ (1981) Power spectrum analysis of heart rate fluctuation: a quantitative probe of beat-to-beat cardiovascular control. Science 213:220–222PubMedCrossRef
go back to reference Aubert AE, Ramaekers D, Beckers F, Breem R, Denef C, Van de WF, Ector H (1999) The analysis of heart rate variability in unrestrained rats. Validation of method and results. Comput Method Prog Biomed 60:197–213CrossRef Aubert AE, Ramaekers D, Beckers F, Breem R, Denef C, Van de WF, Ector H (1999) The analysis of heart rate variability in unrestrained rats. Validation of method and results. Comput Method Prog Biomed 60:197–213CrossRef
go back to reference Aubert AE, Beckers F, Verheyden B, Pletzer V (2004) What happens to the human heart in space? Parabolic flights provide some answers. ESA Bull 119:30–38 Aubert AE, Beckers F, Verheyden B, Pletzer V (2004) What happens to the human heart in space? Parabolic flights provide some answers. ESA Bull 119:30–38
go back to reference Aubert AE, Beckers F, Verheyden B (2005) Cardiovascular function and basics of physiology in microgravity. Acta Cardiol 60:129–151PubMedCrossRef Aubert AE, Beckers F, Verheyden B (2005) Cardiovascular function and basics of physiology in microgravity. Acta Cardiol 60:129–151PubMedCrossRef
go back to reference Bailliart O, Capderou A, Cholley BP, Kays C, Riviere D, Techoueyres P, Lachaud JL, Vaida P (1998) Changes in lower limb volume in humans during parabolic flight. J Appl Physiol 85:2100–2105PubMed Bailliart O, Capderou A, Cholley BP, Kays C, Riviere D, Techoueyres P, Lachaud JL, Vaida P (1998) Changes in lower limb volume in humans during parabolic flight. J Appl Physiol 85:2100–2105PubMed
go back to reference Banks RD, Grissett JD, Turnipseed GT, Saunders PL, Rupert AH (1994) The “push-pull effect”. Aviat Space Environ Med 65:699–704PubMed Banks RD, Grissett JD, Turnipseed GT, Saunders PL, Rupert AH (1994) The “push-pull effect”. Aviat Space Environ Med 65:699–704PubMed
go back to reference Beauchamp KG (1973) Signal processing using analog and digital techniques. George Allen & Unwin Ltd, London, pp 505–533 Beauchamp KG (1973) Signal processing using analog and digital techniques. George Allen & Unwin Ltd, London, pp 505–533
go back to reference Beckers F, Ramaekers D, Aubert AE (1999) ACTS: automated calculation of tachograms and systograms. Prog Biomed Res 4:160–165 Beckers F, Ramaekers D, Aubert AE (1999) ACTS: automated calculation of tachograms and systograms. Prog Biomed Res 4:160–165
go back to reference Beckers F, Seps B, Ramaekers D, Verheyden B, Aubert AE (2003) Parasympathetic heart rate modulation during parabolic flights. Eur J Appl Physiol 90:83–91PubMedCrossRef Beckers F, Seps B, Ramaekers D, Verheyden B, Aubert AE (2003) Parasympathetic heart rate modulation during parabolic flights. Eur J Appl Physiol 90:83–91PubMedCrossRef
go back to reference de Boer RW, Karemaker JM, Strackee J (1987) Hemodynamic fluctuations and baroreflex sensitivity in humans: a beat-to-beat model. Am J Physiol 253:680–689 de Boer RW, Karemaker JM, Strackee J (1987) Hemodynamic fluctuations and baroreflex sensitivity in humans: a beat-to-beat model. Am J Physiol 253:680–689
go back to reference Bolter CP, Wilson SJ (1999) Influence of right atrial pressure on the cardiac pacemaker response to vagal stimulation. Am J Physiol 276:R1112–R1117PubMed Bolter CP, Wilson SJ (1999) Influence of right atrial pressure on the cardiac pacemaker response to vagal stimulation. Am J Physiol 276:R1112–R1117PubMed
go back to reference Capderou A, Bailliart O, Maison-Blanche P, Kedra AW, Atkov O, Techoueyres P, Lachaud JL, Vaida P (2001) Parasympathetic activity during parabolic flight, effect of LBNP during microgravity. Aviat Space Environ Med 72:361–367PubMed Capderou A, Bailliart O, Maison-Blanche P, Kedra AW, Atkov O, Techoueyres P, Lachaud JL, Vaida P (2001) Parasympathetic activity during parabolic flight, effect of LBNP during microgravity. Aviat Space Environ Med 72:361–367PubMed
go back to reference Cooke WH, Hoag JB, Crossman AA, Kuusela TA, Tahvanainen KU, Eckberg DL (1999) Human responses to upright tilt: a window on central autonomic integration. J Physiol 517(Pt2):617–628PubMedCrossRef Cooke WH, Hoag JB, Crossman AA, Kuusela TA, Tahvanainen KU, Eckberg DL (1999) Human responses to upright tilt: a window on central autonomic integration. J Physiol 517(Pt2):617–628PubMedCrossRef
go back to reference Eckberg DL (1997) Sympathovagal balance: a critical appraisal. Circulation 96:3224–3232PubMed Eckberg DL (1997) Sympathovagal balance: a critical appraisal. Circulation 96:3224–3232PubMed
go back to reference Eckberg DL (2003) The human respiratory gate. J Physiol 548:339–352PubMed Eckberg DL (2003) The human respiratory gate. J Physiol 548:339–352PubMed
go back to reference Foldager N, Andersen TA, Jessen FB, Ellegaard P, Stadeager C, Videbaek R, Norsk P (1996) Central venous pressure in humans during microgravity. J Appl Physiol 81:408–412PubMed Foldager N, Andersen TA, Jessen FB, Ellegaard P, Stadeager C, Videbaek R, Norsk P (1996) Central venous pressure in humans during microgravity. J Appl Physiol 81:408–412PubMed
go back to reference Grossman P (1992) Breathing rhythms of the heart in a world of no steady state: a comment on Weber, Molenaar, and van der Molen. Psychophysiology 29:66–72PubMedCrossRef Grossman P (1992) Breathing rhythms of the heart in a world of no steady state: a comment on Weber, Molenaar, and van der Molen. Psychophysiology 29:66–72PubMedCrossRef
go back to reference Guzzetti S, Dassi S, Pecis M, Casati R, Masu AM, Longoni P, Tinelli M, Cerutti S, Pagani M, Malliani A (1991) Altered pattern of circadian neural control of heart period in mild hypertension. J Hypertens 9:831–838PubMedCrossRef Guzzetti S, Dassi S, Pecis M, Casati R, Masu AM, Longoni P, Tinelli M, Cerutti S, Pagani M, Malliani A (1991) Altered pattern of circadian neural control of heart period in mild hypertension. J Hypertens 9:831–838PubMedCrossRef
go back to reference Iwase S, Mano T, Cui J, Kitazawa H, Kamiya A, Miyazaki S, Sugiyama Y, Mukai C, Nagaoka S (1999) Sympathetic outflow to muscle in humans during short periods of microgravity produced by parabolic flight. Am J Physiol 277:R419–R426PubMed Iwase S, Mano T, Cui J, Kitazawa H, Kamiya A, Miyazaki S, Sugiyama Y, Mukai C, Nagaoka S (1999) Sympathetic outflow to muscle in humans during short periods of microgravity produced by parabolic flight. Am J Physiol 277:R419–R426PubMed
go back to reference Jasson S, Medigue C, Maison-Blanche P, Montano N, Meyer L, Vermeiren C, Mansier P, Coumel P, Malliani A, Swynghedauw B (1997) Instant power spectrum analysis of heart rate variability during orthostatic tilt using a time-/frequency-domain method. Circulation 96:3521–3526PubMed Jasson S, Medigue C, Maison-Blanche P, Montano N, Meyer L, Vermeiren C, Mansier P, Coumel P, Malliani A, Swynghedauw B (1997) Instant power spectrum analysis of heart rate variability during orthostatic tilt using a time-/frequency-domain method. Circulation 96:3521–3526PubMed
go back to reference Johns JP, Vernalis MN, Karemaker JM, Latham RD (1994) Doppler evaluation of cardiac filling and ejection properties in humans during parabolic flight. J Appl Physiol 76:2621–2626PubMedCrossRef Johns JP, Vernalis MN, Karemaker JM, Latham RD (1994) Doppler evaluation of cardiac filling and ejection properties in humans during parabolic flight. J Appl Physiol 76:2621–2626PubMedCrossRef
go back to reference Levy MN, Martin PJ, Iano T, Zieske H (1970) Effects of single vagal stimuli on heart rate and atrioventricular conduction. Am J Physiol 218:1256–1262PubMed Levy MN, Martin PJ, Iano T, Zieske H (1970) Effects of single vagal stimuli on heart rate and atrioventricular conduction. Am J Physiol 218:1256–1262PubMed
go back to reference Linnarsson D, Sundberg CJ, Tedner B, Haruna Y, Karemaker JM, Antonutto G, Di Prampero PE (1996) Blood pressure and heart rate responses to sudden changes of gravity during exercise. Am J Physiol 270:H2132–H2142PubMed Linnarsson D, Sundberg CJ, Tedner B, Haruna Y, Karemaker JM, Antonutto G, Di Prampero PE (1996) Blood pressure and heart rate responses to sudden changes of gravity during exercise. Am J Physiol 270:H2132–H2142PubMed
go back to reference Malik M, Camm AJ (1993) Components of heart rate variability—what they really mean and what we really measure. Am J Cardiol 72:821–822PubMedCrossRef Malik M, Camm AJ (1993) Components of heart rate variability—what they really mean and what we really measure. Am J Cardiol 72:821–822PubMedCrossRef
go back to reference Malliani A, Pagani M, Lombardi F, Cerutti S (1991) Cardiovascular neural regulation explored in the frequency domain. Circulation 84:482–492PubMed Malliani A, Pagani M, Lombardi F, Cerutti S (1991) Cardiovascular neural regulation explored in the frequency domain. Circulation 84:482–492PubMed
go back to reference Mokrane A, Nadeau R (1998) Dynamics of heart rate response to sympathetic nerve stimulation. Am J Physiol 275:H995–H1001PubMed Mokrane A, Nadeau R (1998) Dynamics of heart rate response to sympathetic nerve stimulation. Am J Physiol 275:H995–H1001PubMed
go back to reference Montano N, Lombardi F, Gnecchi RT, Contini M, Finocchiaro ML, Baselli G, Porta A, Cerutti S, Malliani A (1992) Spectral analysis of sympathetic discharge, R–R interval and systolic arterial pressure in decerebrate cats. J Auton Nerv Syst 40:21–31PubMedCrossRef Montano N, Lombardi F, Gnecchi RT, Contini M, Finocchiaro ML, Baselli G, Porta A, Cerutti S, Malliani A (1992) Spectral analysis of sympathetic discharge, R–R interval and systolic arterial pressure in decerebrate cats. J Auton Nerv Syst 40:21–31PubMedCrossRef
go back to reference Montano N, Ruscone TG, Porta A, Lombardi F, Pagani M, Malliani A (1994) Power spectrum analysis of heart rate variability to assess the changes in sympathovagal balance during graded orthostatic tilt. Circulation 90:1826–1831PubMed Montano N, Ruscone TG, Porta A, Lombardi F, Pagani M, Malliani A (1994) Power spectrum analysis of heart rate variability to assess the changes in sympathovagal balance during graded orthostatic tilt. Circulation 90:1826–1831PubMed
go back to reference Mukai CN, Lathers CM, Charles JB, Bennett BS, Igarashi M, Patel S (1991) Acute hemodynamic responses to weightlessness during parabolic flight. J Clin Pharmacol 31:993–1000PubMed Mukai CN, Lathers CM, Charles JB, Bennett BS, Igarashi M, Patel S (1991) Acute hemodynamic responses to weightlessness during parabolic flight. J Clin Pharmacol 31:993–1000PubMed
go back to reference Novak V, Novak P, de Champlain J, Le Blanc AR, Martin R, Nadeau R (1993) Influence of respiration on heart rate and blood pressure fluctuations. J Appl Physiol 74:617–626PubMed Novak V, Novak P, de Champlain J, Le Blanc AR, Martin R, Nadeau R (1993) Influence of respiration on heart rate and blood pressure fluctuations. J Appl Physiol 74:617–626PubMed
go back to reference Pagani M, Montano N, Porta A, Malliani A, Abboud FM, Birkett C, Somers VK (1997) Relationship between spectral components of cardiovascular variabilities and direct measures of muscle sympathetic nerve activity in humans. Circulation 95:1441–1448PubMed Pagani M, Montano N, Porta A, Malliani A, Abboud FM, Birkett C, Somers VK (1997) Relationship between spectral components of cardiovascular variabilities and direct measures of muscle sympathetic nerve activity in humans. Circulation 95:1441–1448PubMed
go back to reference Persson PB, Stauss H, Chung O, Wittmann U, Unger T (1992) Spectrum analysis of sympathetic nerve activity and blood pressure in conscious rats. Am J Physiol 263:H1348–H1355PubMed Persson PB, Stauss H, Chung O, Wittmann U, Unger T (1992) Spectrum analysis of sympathetic nerve activity and blood pressure in conscious rats. Am J Physiol 263:H1348–H1355PubMed
go back to reference Pump B, Videbaek R, Gabrielsen A, Norsk P (1999) Arterial pressure in humans during weightlessness induced by parabolic flights. J Appl Physiol 87:928–932PubMed Pump B, Videbaek R, Gabrielsen A, Norsk P (1999) Arterial pressure in humans during weightlessness induced by parabolic flights. J Appl Physiol 87:928–932PubMed
go back to reference Ramirez RW (1985) The FFT. Fundamentals and concepts. Prentice-Hall, Englewood Cliffs, pp 133–137 Ramirez RW (1985) The FFT. Fundamentals and concepts. Prentice-Hall, Englewood Cliffs, pp 133–137
go back to reference Schlegel TT, Benavides EW, Barker DC, Brown TE, Harm DL, DeSilva SJ, Low PA (1998) Cardiovascular and valsalva responses during parabolic flight. J Appl Physiol 85:1957–1965PubMed Schlegel TT, Benavides EW, Barker DC, Brown TE, Harm DL, DeSilva SJ, Low PA (1998) Cardiovascular and valsalva responses during parabolic flight. J Appl Physiol 85:1957–1965PubMed
go back to reference Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology (1996) Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation 93:1043–1065 Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology (1996) Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation 93:1043–1065
go back to reference Videbaek R, Norsk P (1996) Atrial distension in humans during weightlessness induced by parabolic flights. J Gravit Physiol 3:48–49PubMed Videbaek R, Norsk P (1996) Atrial distension in humans during weightlessness induced by parabolic flights. J Gravit Physiol 3:48–49PubMed
go back to reference Yang T, Senturia JB, Levy MN (1994) Antecedent sympathetic stimulation alters time course of chronotropic response to vagal stimulation in dogs. Am J Physiol 266:H1339–H1347PubMed Yang T, Senturia JB, Levy MN (1994) Antecedent sympathetic stimulation alters time course of chronotropic response to vagal stimulation in dogs. Am J Physiol 266:H1339–H1347PubMed
go back to reference Yates BJ, Kerman IA (1998) Post-spaceflight orthostatic intolerance: possible relationship to microgravity-induced plasticity in the vestibular system. Brain Res Brain Res Rev 28:73–82PubMedCrossRef Yates BJ, Kerman IA (1998) Post-spaceflight orthostatic intolerance: possible relationship to microgravity-induced plasticity in the vestibular system. Brain Res Brain Res Rev 28:73–82PubMedCrossRef
go back to reference Zhang LF (2001) Vascular adaptation to microgravity: what have we learned? J Appl Physiol 91:2415–2430PubMed Zhang LF (2001) Vascular adaptation to microgravity: what have we learned? J Appl Physiol 91:2415–2430PubMed
Metadata
Title
Spectral characteristics of heart rate fluctuations during parabolic flight
Authors
Bart Verheyden
Frank Beckers
André E. Aubert
Publication date
01-12-2005
Publisher
Springer-Verlag
Published in
European Journal of Applied Physiology / Issue 5-6/2005
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-005-0016-5

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