Comparison of Polar® RS800G3™ heart rate monitor with Polar® S810i™ and electrocardiogram to obtain the series of RR intervals and analysis of heart rate variability at rest

Summary The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar® RS800G3™, Polar® S8...

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Published inClinical physiology and functional imaging Vol. 36; no. 2; pp. 112 - 117
Main Authors de Rezende Barbosa, Marianne Penachini da Costa, Silva, Natália Turri da, de Azevedo, Fábio Mícolis, Pastre, Carlos Marcelo, Vanderlei, Luiz Carlos Marques
Format Journal Article
LanguageEnglish
Published England Blackwell Publishing Ltd 01.03.2016
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Abstract Summary The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar® RS800G3™, Polar® S810i™ and eletrocardiogram (ECG) to know whether the series of Polar® RS800G3™ are as reliable as those devices already validated. We analysed data from 30 healthy young adults, male, with an average age of 20·66 ± 1·40 years, which had captured the heart rate beat to beat in the three devices simultaneously with spontaneously breathing, first in the supine position and subsequently sit both for 30 min. The obtained series of RR intervals was used to calculate the indexes of HRV in the time domain (SDNN and RMSSD) and in the frequency domain (LF, HF and LF/HF). There were no significant differences in HRV indexes calculated from series obtained by the three devices, regardless of the position analysed, and a high correlation coefficient was observed. The results suggest that the Polar® RS800G3™ is able to capture series of RR intervals for analysis of HRV indexes as reliable as those obtained by ECG and Polar® S810i™.
AbstractList Summary The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar® RS800G3™, Polar® S810i™ and eletrocardiogram (ECG) to know whether the series of Polar® RS800G3™ are as reliable as those devices already validated. We analysed data from 30 healthy young adults, male, with an average age of 20·66 ± 1·40 years, which had captured the heart rate beat to beat in the three devices simultaneously with spontaneously breathing, first in the supine position and subsequently sit both for 30 min. The obtained series of RR intervals was used to calculate the indexes of HRV in the time domain (SDNN and RMSSD) and in the frequency domain (LF, HF and LF/HF). There were no significant differences in HRV indexes calculated from series obtained by the three devices, regardless of the position analysed, and a high correlation coefficient was observed. The results suggest that the Polar® RS800G3™ is able to capture series of RR intervals for analysis of HRV indexes as reliable as those obtained by ECG and Polar® S810i™.
The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar® RS800G3™, Polar® S810i™ and eletrocardiogram (ECG) to know whether the series of Polar® RS800G3™ are as reliable as those devices already validated. We analysed data from 30 healthy young adults, male, with an average age of 20·66 ± 1·40 years, which had captured the heart rate beat to beat in the three devices simultaneously with spontaneously breathing, first in the supine position and subsequently sit both for 30 min. The obtained series of RR intervals was used to calculate the indexes of HRV in the time domain (SDNN and RMSSD) and in the frequency domain (LF, HF and LF/HF). There were no significant differences in HRV indexes calculated from series obtained by the three devices, regardless of the position analysed, and a high correlation coefficient was observed. The results suggest that the Polar® RS800G3™ is able to capture series of RR intervals for analysis of HRV indexes as reliable as those obtained by ECG and Polar® S810i™.
The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar® RS800G3™, Polar® S810i™ and eletrocardiogram (ECG) to know whether the series of Polar® RS800G3™ are as reliable as those devices already validated. We analysed data from 30 healthy young adults, male, with an average age of 20·66 ± 1·40 years, which had captured the heart rate beat to beat in the three devices simultaneously with spontaneously breathing, first in the supine position and subsequently sit both for 30 min. The obtained series of RR intervals was used to calculate the indexes of HRV in the time domain (SDNN and RMSSD) and in the frequency domain (LF, HF and LF/HF). There were no significant differences in HRV indexes calculated from series obtained by the three devices, regardless of the position analysed, and a high correlation coefficient was observed. The results suggest that the Polar® RS800G3™ is able to capture series of RR intervals for analysis of HRV indexes as reliable as those obtained by ECG and Polar® S810i™.The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar® RS800G3™, Polar® S810i™ and eletrocardiogram (ECG) to know whether the series of Polar® RS800G3™ are as reliable as those devices already validated. We analysed data from 30 healthy young adults, male, with an average age of 20·66 ± 1·40 years, which had captured the heart rate beat to beat in the three devices simultaneously with spontaneously breathing, first in the supine position and subsequently sit both for 30 min. The obtained series of RR intervals was used to calculate the indexes of HRV in the time domain (SDNN and RMSSD) and in the frequency domain (LF, HF and LF/HF). There were no significant differences in HRV indexes calculated from series obtained by the three devices, regardless of the position analysed, and a high correlation coefficient was observed. The results suggest that the Polar® RS800G3™ is able to capture series of RR intervals for analysis of HRV indexes as reliable as those obtained by ECG and Polar® S810i™.
Summary The Polar RS800G3(TM) rate monitor was released in the market to replace the Polar S810i(TM), and few studies have assessed that the RR series obtained by this equipment is reliable for analysis of heart rate variability (HRV). We compared HRV indexes among the devices Polar RS800G3(TM), Polar S810i(TM) and eletrocardiogram (ECG) to know whether the series of Polar RS800G3(TM) are as reliable as those devices already validated. We analysed data from 30 healthy young adults, male, with an average age of 20·66 ± 1·40 years, which had captured the heart rate beat to beat in the three devices simultaneously with spontaneously breathing, first in the supine position and subsequently sit both for 30 min. The obtained series of RR intervals was used to calculate the indexes of HRV in the time domain (SDNN and RMSSD) and in the frequency domain (LF,HF and LF/HF). There were no significant differences in HRV indexes calculated from series obtained by the three devices, regardless of the position analysed, and a high correlation coefficient was observed. The results suggest that the Polar RS800G3(TM) is able to capture series of RR intervals for analysis of HRV indexes as reliable as those obtained by ECG and Polar S810i(TM).
Author Pastre, Carlos Marcelo
de Rezende Barbosa, Marianne Penachini da Costa
Silva, Natália Turri da
Vanderlei, Luiz Carlos Marques
de Azevedo, Fábio Mícolis
Author_xml – sequence: 1
  givenname: Marianne Penachini da Costa
  surname: de Rezende Barbosa
  fullname: de Rezende Barbosa, Marianne Penachini da Costa
  email: Marianne Penachini da Costa de Rezende Barbosa, Physiotherapy Program, Universidade Estadual Paulista - FCT/UNESP, A/C Luiz Carlos Marques Vanderlei, Roberto Simonsen St, 305 - zip code: 19060-900 Presidente Prudente, SP, Brazil, mapenachini@hotmail.com
  organization: Universidade Estadual Paulista - FCT/UNESP, SP, Presidente Prudente, Brazil
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  organization: Physiotherapy Department, Universidade Estadual Paulista - FCT/UNESP, SP, Presidente Prudente, Brazil
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  givenname: Fábio Mícolis
  surname: de Azevedo
  fullname: de Azevedo, Fábio Mícolis
  organization: Physiotherapy Department, Universidade Estadual Paulista - FCT/UNESP, SP, Presidente Prudente, Brazil
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  givenname: Carlos Marcelo
  surname: Pastre
  fullname: Pastre, Carlos Marcelo
  organization: Physiotherapy Department, Universidade Estadual Paulista - FCT/UNESP, SP, Presidente Prudente, Brazil
– sequence: 5
  givenname: Luiz Carlos Marques
  surname: Vanderlei
  fullname: Vanderlei, Luiz Carlos Marques
  organization: Physiotherapy Department, Universidade Estadual Paulista - FCT/UNESP, SP, Presidente Prudente, Brazil
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Keywords heart rate
autonomic nervous system
validation studies
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electrocardiography
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References Vanderlei LCM, Silva R, Pastre CM, Azevedo FM, Godoy MF. Comparison of the Polar S810i monitor and the ECG for the analysis of heart rate variability in the time and frequency domains. Braz J Med Biol Res (2008); 41: 854-859.
Niskanen JP, Tarvainen MP, Ranta-aho PO, Karjalainen PA. Software for advanced HRV analysis. Comput Methods Programs Biomed (2004); 76: 73-81.
Zuttin RS, Moreno MA, César MC, Martins LEB, Catai AM, Silva E. Avaliação da modulação autonômica da freqüência cardíaca nas posturas supina e sentada de homens jovens sedentários. Rev Bras Fisioter (2008); 12: 7-12.
Bricout V-A, DeChenaud S, Favre-Juvin A. Analyses of heart rate variability in young soccer players: the effects of sport activity. Auton Neurosci (2010); 154: 112-116.
Vanderlei LCM, Pastre CM, Hoshi RA, Carvalho TD, Godoy MF. Noções básicas de variabilidade da frequência cardíaca e sua aplicabilidade clínica. Rev Bras Cir Cardiovasc (2009); 24: 205-217.
Nunan D, Jakovljevic DG, Donovan G, Hodges LD, Sandercock GRH, Brodie DA. Levels of agreement for RR intervals and short-term heart rate variability obtained from the Polar S810 and an alternative system. Eur J Appl Physiol (2008); 103: 529-537.
Nascimento MF, Barros JA. Efeitos do condicionamento físico na frequência cardíaca de repouso e sua variabilidade em indivíduos do gênero masculino sedentários e praticantes de exercícios físicos. RBPFEX (2008); 2: 209-220.
Wallén MB, Hasson D, Theorell T, Canlon B, Osika W. Possibilities and limitations of the polar RS800 in measuring heart rate variability at rest. Eur J Appl Physiol (2012); 112: 1153-1165.
Maior AS, Netto CF, Eichwald A, Druck G, Villaça G, Foschiera RS, de Oliveira WB, Menezes P, Marques-Neto SR, Cavinato C. Influência da intensidade e do volume do treinamento resistido no comportamento autonômico cardíaco. Rev SOCERJ (2009); 22: 201-209.
Porto LGG, Junqueira LF Jr. Comparison of time-domain short-term heart interval variability analysis using a wrist-worn heart rate monitor and the conventional electrocardiogram. Pacing Clin Electrophysiol (2009); 32: 43-51.
Gamelin FX, Berthoins S, Bosquet L. Validity of the polar S810 heart rate monitor to measure R-R intervals at rest. Med Sci Sports Exerc (2006); 38: 887-893.
Kingsley M, Lewis MJ, Marson RE. Comparison of polar S810s and an ambulatory ECG system for RR interval measurement during progressive exercise. Int J Sports Med (2005); 26: 39-44.
Weippert M, Kumar M, Kreuzfeld S, Arndt D, Rieger A, Stoll R. Comparison of three mobile devices for measuring R-R intervals and heart rate variability: Polar S810i, Suunto t6 and an ambulatory ECG system. Eur J Appl Physiol (2010); 109: 779-786.
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Sakabe DI, Catai AM, Neves VFC, Oliveira L, Silva de Sá MF, Azevedo GB, Gallo GD, Júnior L, Martins LEB, Silva E. Análise da modulação do coração durante condições de repouso em homens de meia-idade e mulheres pós-menopausa. Rev Bras Fisioter (2004); 8: 89-95.
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References_xml – reference: Cassirame J, Tordia N, Mourota L, Rakobowchuk M, Regnard J. L'utilisation d'un nouveau système d'enregistrement de fréquence cardiaque battement à battement pour l'analyse traditionnelle de variabilité de fréquence cardiaque. Sci Sports (2007); 22: 238-242.
– reference: Nascimento MF, Barros JA. Efeitos do condicionamento físico na frequência cardíaca de repouso e sua variabilidade em indivíduos do gênero masculino sedentários e praticantes de exercícios físicos. RBPFEX (2008); 2: 209-220.
– reference: Maior AS, Netto CF, Eichwald A, Druck G, Villaça G, Foschiera RS, de Oliveira WB, Menezes P, Marques-Neto SR, Cavinato C. Influência da intensidade e do volume do treinamento resistido no comportamento autonômico cardíaco. Rev SOCERJ (2009); 22: 201-209.
– reference: Sakabe DI, Catai AM, Neves VFC, Oliveira L, Silva de Sá MF, Azevedo GB, Gallo GD, Júnior L, Martins LEB, Silva E. Análise da modulação do coração durante condições de repouso em homens de meia-idade e mulheres pós-menopausa. Rev Bras Fisioter (2004); 8: 89-95.
– reference: Gamelin FX, Berthoins S, Bosquet L. Validity of the polar S810 heart rate monitor to measure R-R intervals at rest. Med Sci Sports Exerc (2006); 38: 887-893.
– reference: Zuttin RS, Moreno MA, César MC, Martins LEB, Catai AM, Silva E. Avaliação da modulação autonômica da freqüência cardíaca nas posturas supina e sentada de homens jovens sedentários. Rev Bras Fisioter (2008); 12: 7-12.
– reference: Nunan D, Jakovljevic DG, Donovan G, Hodges LD, Sandercock GRH, Brodie DA. Levels of agreement for RR intervals and short-term heart rate variability obtained from the Polar S810 and an alternative system. Eur J Appl Physiol (2008); 103: 529-537.
– reference: Vanderlei LCM, Pastre CM, Hoshi RA, Carvalho TD, Godoy MF. Noções básicas de variabilidade da frequência cardíaca e sua aplicabilidade clínica. Rev Bras Cir Cardiovasc (2009); 24: 205-217.
– reference: Kingsley M, Lewis MJ, Marson RE. Comparison of polar S810s and an ambulatory ECG system for RR interval measurement during progressive exercise. Int J Sports Med (2005); 26: 39-44.
– reference: Vanderlei LCM, Silva R, Pastre CM, Azevedo FM, Godoy MF. Comparison of the Polar S810i monitor and the ECG for the analysis of heart rate variability in the time and frequency domains. Braz J Med Biol Res (2008); 41: 854-859.
– reference: Bricout V-A, DeChenaud S, Favre-Juvin A. Analyses of heart rate variability in young soccer players: the effects of sport activity. Auton Neurosci (2010); 154: 112-116.
– reference: Weippert M, Kumar M, Kreuzfeld S, Arndt D, Rieger A, Stoll R. Comparison of three mobile devices for measuring R-R intervals and heart rate variability: Polar S810i, Suunto t6 and an ambulatory ECG system. Eur J Appl Physiol (2010); 109: 779-786.
– reference: Porto LGG, Junqueira LF Jr. Comparison of time-domain short-term heart interval variability analysis using a wrist-worn heart rate monitor and the conventional electrocardiogram. Pacing Clin Electrophysiol (2009); 32: 43-51.
– reference: Wallén MB, Hasson D, Theorell T, Canlon B, Osika W. Possibilities and limitations of the polar RS800 in measuring heart rate variability at rest. Eur J Appl Physiol (2012); 112: 1153-1165.
– reference: Niskanen JP, Tarvainen MP, Ranta-aho PO, Karjalainen PA. Software for advanced HRV analysis. Comput Methods Programs Biomed (2004); 76: 73-81.
– volume: 26
  start-page: 39
  year: 2005
  end-page: 44
  article-title: Comparison of polar S810s and an ambulatory ECG system for RR interval measurement during progressive exercise
  publication-title: Int J Sports Med
– volume: 2
  start-page: 209
  year: 2008
  end-page: 220
  article-title: Efeitos do condicionamento físico na frequência cardíaca de repouso e sua variabilidade em indivíduos do gênero masculino sedentários e praticantes de exercícios físicos
  publication-title: RBPFEX
– volume: 12
  start-page: 7
  year: 2008
  end-page: 12
  article-title: Avaliação da modulação autonômica da freqüência cardíaca nas posturas supina e sentada de homens jovens sedentários
  publication-title: Rev Bras Fisioter
– volume: 22
  start-page: 201
  year: 2009
  end-page: 209
  article-title: Influência da intensidade e do volume do treinamento resistido no comportamento autonômico cardíaco
  publication-title: Rev SOCERJ
– volume: 109
  start-page: 779
  year: 2010
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Snippet Summary The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by...
The Polar® RS800G3™ rate monitor was released in the market to replace the Polar® S810i™, and few studies have assessed that the RR series obtained by this...
Summary The Polar RS800G3(TM) rate monitor was released in the market to replace the Polar S810i(TM), and few studies have assessed that the RR series obtained...
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wiley
istex
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SubjectTerms autonomic nervous system
electrocardiography
Electrocardiography - instrumentation
Equipment Design
Healthy Volunteers
Heart Rate
Humans
Male
Patient Positioning
Predictive Value of Tests
Reproducibility of Results
Rest
Signal Processing, Computer-Assisted
Supine Position
sympathetic nervous system
Time Factors
validation studies
Young Adult
Title Comparison of Polar® RS800G3™ heart rate monitor with Polar® S810i™ and electrocardiogram to obtain the series of RR intervals and analysis of heart rate variability at rest
URI https://api.istex.fr/ark:/67375/WNG-PCMZ7DW9-0/fulltext.pdf
https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fcpf.12203
https://www.ncbi.nlm.nih.gov/pubmed/25348547
https://www.proquest.com/docview/1764566858
https://www.proquest.com/docview/1765112695
Volume 36
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