PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 23, 2018Medicine & Science in Sports & Exercise69 citations

Comparison between Slow Components of HR and V˙O2 Kinetics: Functional Significance

View Full Paper
LZLucrezia ZuccarelliSPSimone PorcelliLRLetizia Rasica

Structured PICO

Does the slow component of HR kinetics occur at a lower work rate and is it more pronounced than the slow component of V˙O2 kinetics during constant work rate exercises?

P
Population
17 male subjects, mean age 27 ± 4 years
I
Intervention
Constant work rate (CWR) exercises on a cycle ergometer at different intensities (moderate, heavy, severe, and HR-clamped)
C
Comparator
Comparison between HR and V˙O2 kinetics across different exercise intensities
O
Outcome
Relative amplitude of the slow component of HR kinetics compared to V˙O2 kineticssurrogate

The slow component of heart rate kinetics occurs at lower work rates and is more pronounced than oxygen consumption kinetics, suggesting exercise prescriptions based on specific heart rates may lead to premature fatigue.

Abstract

PURPOSE: Aerobic exercise prescription is often based on a linear relationship between pulmonary oxygen consumption (V˙O2) and heart rate (HR). The aim of the present study was to test the hypothesis that during constant work rate (CWR) exercises at different intensities, the slow component of HR kinetics occurs at lower work rate and is more pronounced that the slow component of V˙O2 kinetics. METHODS: Seventeen male (age, 27 ± 4 yr) subjects performed on a cycle ergometer an incremental exercise to voluntary exhaustion and several CWR exercises: 1) moderate CWR exercises, below gas exchange threshold (GET); 2) heavy CWR exercise, at 45% of the difference between GET and V˙O2 peak (Δ); 3) severe CWR exercise, at 95% of Δ; 4) "HRCLAMPED" exercise in which work rate was continuously adjusted to maintain a constant HR, slightly higher than that determined at GET. Breath-by-breath V˙O2, HR, and other variables were determined. RESULTS: In moderate CWR exercises, no slow component of V˙O2 kinetics was observed, whereas a slow component with a relative amplitude (with respect to the total response) of 24.8 ± 11.0% was observed for HR kinetics. During heavy CWR exercise, the relative amplitude of the HR slow component was more pronounced than that for V˙O2 (31.6 ± 11.2% and 23.3 ± 9.0%, respectively). During HRCLAMPED, the decrease in work rate (~14%) needed to maintain a constant HR was associated with a decreased V˙O2 (~10%). CONCLUSIONS: The HR slow component occurred at a lower work rate and was more pronounced than the V˙O2 slow component. Exercise prescriptions at specific HR values, when carried out for periods longer than a few minutes, could lead to premature fatigue.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Zuccarelli et al. (2018) studied this question.

synapsesocial.com/papers/6a8cec63cf4f1803a62f04e5https://doi.org/10.1249/mss.0000000000001612
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Self-paced exercise is less physically challenging than enforced constant pace exercise of the same intensity: influence of complex central metabolic control2009 · 117 citations
  2. 2Effects of hypoxic hypoxia on O2uptake and heart rate kinetics during heavy exercise1996 · 206 citations
  3. 3Cardiovascular Drift During Prolonged Exercise: New Perspectives2001 · 303 citations
  4. 4Autonomic Adjustments to Exercise in Humans2015 · 54 citations
  5. 5Non-invasive cardiac output evaluation during a maximal progressive exercise test, using a new impedance cardiograph device2001 · 268 citations