» Articles » PMID: 32237785

Recurrence Quantification Analysis of Heart Rate Variability During Continuous Incremental Exercise Test in Obese Subjects

Overview
Journal Chaos
Specialty Science
Date 2020 Apr 3
PMID 32237785
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

The present paper concerns a new description of changing in metabolism during incremental exercises test that permit an individually tailored program of exercises for obese subjects. We analyzed heart rate variability from RR interval time series (tachogram) with an alternative approach, the recurrence quantification analysis, that allows a description of a time series in terms of its dynamic structure and is able to identify the phase transitions. A transition in cardiac signal dynamics was detected and it perfectly reflects the aerobic threshold, as identified by gas exchange during an incremental exercise test, revealing the coupling from the respiratory system toward the heart. Moreover, our analysis shows that, in the recurrence plot of RR interval, it is possible to identify a specific pattern that allows to identify phase transitions between different dynamic regimes. The perfect match of the occurrence of the phase transitions with changes observed in the VO consumption, the gold standard approach to estimate thresholds, strongly supports the possibility of using our analysis of RR interval to detect metabolic threshold. In conclusion, we propose a novel nonlinear data analysis method that allows for an easy and personalized detection of thresholds both from professional and even from low-cost wearable devices, without the need of expensive gas analyzers.

Citing Articles

Enhancing cardiovascular monitoring: a non-linear model for characterizing RR interval fluctuations in exercise and recovery.

Castillo-Aguilar M, Mabe-Castro D, Medina D, Nunez-Espinosa C Sci Rep. 2025; 15(1):8628.

PMID: 40074820 PMC: 11904009. DOI: 10.1038/s41598-025-93654-6.


Agreement Between Heart Rate Variability - Derived vs. Ventilatory and Lactate Thresholds: A Systematic Review with Meta-Analyses.

Tanner V, Millet G, Bourdillon N Sports Med Open. 2024; 10(1):109.

PMID: 39379776 PMC: 11461412. DOI: 10.1186/s40798-024-00768-8.


Self-organization of whole-gene expression through coordinated chromatin structural transition.

Zimatore G, Tsuchiya M, Hashimoto M, Kasperski A, Giuliani A Biophys Rev (Melville). 2024; 2(3):031303.

PMID: 38505632 PMC: 10903504. DOI: 10.1063/5.0058511.


Auditory rhythm complexity affects cardiac dynamics in perception and synchronization.

Wright S, Palmer C PLoS One. 2023; 18(11):e0293882.

PMID: 37976253 PMC: 10656015. DOI: 10.1371/journal.pone.0293882.


Heart Rate Variability-Derived Thresholds for Exercise Intensity Prescription in Endurance Sports: A Systematic Review of Interrelations and Agreement with Different Ventilatory and Blood Lactate Thresholds.

Kaufmann S, Gronwald T, Herold F, Hoos O Sports Med Open. 2023; 9(1):59.

PMID: 37462761 PMC: 10354346. DOI: 10.1186/s40798-023-00607-2.