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Chronotropic Incompetence During Exercise Testing in Obese Adolescents

Chronotropic Incompetence During Cardiopulmonary Exercise Testing in Obese Adolescents: Associations With Caridometabolic Health

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04185753
Enrollment
60
Registered
2019-12-04
Start date
2019-11-29
Completion date
2020-01-30
Last updated
2019-12-04

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiac Disease, Cardiovascular Risk Factor, Obesity, Childhood

Brief summary

In adolescents with obesity cardiopulmonary exercise testing (CPET) has become an important clinical examination providing valuable information with regard to the integrative exercise responses, including the pulmonary, cardiovascular and muscular systems. During CPET, mechanical constraints in ventilation, an elevated risk for hypoxia and chronotropic incompetence (CI) (defined as the inability of the heart to increase its rate with increased activity), or compromised cardiac function (e.g. lowered heart rate (HR) recovery, chronotropic index and stroke volume) are often observed in obese adults. Moreover, several studies regarding exercise capacity and cardiopulmonary responses to maximal endurance exercise testing have been performed in obese adolescents. Despite these previous investigations in obese adolescents it remains controversial whether cardiopulmonary disturbances can be observed consistently during CPET. However, a number of studies have reported a suboptimal response to exercise, in particular a reduced peak heart rate (HRpeak) and peak cycling power output (Wpeak). Adult obesity modifies cardiac behavior, including resting HR and CI, which has a marked effect on exercise capacity. Therefore, chronotropic variables are the most important factors that affect exercise performance. It has been shown that both peak and resting HR account for over forty percent of variability of exercise capacity. Interestingly, resting HR and HR response to exercise, including a blunted HR increase, low chronotropic index and HR recovery, are important predictors of all-cause mortality and cardiovascular death, at least in adults. These changes in HR during and recovery from CPET are mediated by the balance between sympathetic and vagal activity of the autonomic nervous system. Adverse cardiovascular outcomes associated with the metabolic syndrome may be mediated by autonomic dysfunction, whereby obesity is characterized by sympathetic predominance and a decrease in vagal activity in the basal state, where reduced sympathetic responsiveness has been observed during exercise. Therefore, these multiple exercise risk markers could provide valuable clinical information regarding cardiometabolic health. Nonetheless HR behavior during CPET has not been described in obese adolescents. The goal of this study is to examine the HR behavior of obese adolescents during CPET to clarify whether this population suffer from CI.

Interventions

DIAGNOSTIC_TESTThe prevalence of chronotropic incompetence during maximal cardiopulmonary exercise testing

The prevalence of chronotropic incompetence during maximal cardiopulmonary exercise testing

Sponsors

Hasselt University
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
11 Years to 17 Years

Inclusion criteria

* obese or lean (based on extended international (IOTF) body mass index cut-offs for thinness, overweight and obesity) * Parental permission

Exclusion criteria

* Chronic cardiovascular, renal, pulmonary or orthopaedic disease * Medication use that could possibly influence the heart rate

Design outcomes

Primary

MeasureTime frameDescription
Heart rate (HR) during exercise testingday 1Assessed using a 12-lead ECG device
Peak oxygen uptake (VO2) during exercise testingday 1Cardiopulmonary exercise test on an electronically braked cycle ergometer is performed. With the aid of continuous pulmonary gas exchange analysis VO2 is collected breath-by-breath and averaged every ten seconds.
Peak workload during exercise testingday 1Cardiopulmonary exercise test on an electronically braked cycle ergometer is performed and the incremental workload is measured

Secondary

MeasureTime frameDescription
Hip circumferenceday1Hip circumference will be measured to the nearest 0.1cm using a flexible metric measuring tape with participants barefoot (in underwear) in standing position. Hip circumference is measured at the widest circumference of the hip at the level of the greater trochanter.
Physical activity questionnaire for adolescents (PAQ-A)day 1physical activity determined using the validated Dutch physical activity questionnaire for adolescents
Tanner stageday 1Puberty stage (ranging from 1 to 5) will be assessed in all participants by the pediatric endocrinologist using Tanner staging criteria.
Plasma glucoseday 1Blood analyses
Total cholesterolday 1Blood analyses
High-density lipoprotein cholesterolday 1Blood analyses
Low-density lipoprotein cholesterolday 1Blood analyses
Triglyceride concentrationday 1Blood analyses
Body heightday 1Body height is measured to the nearest 0.1cm using a wall-mounted Harpenden stadiometer, with participants barefoot
Serum leptin concentrationday 1Blood analyses
Insulinday 1Blood analyses
Homeostatic model assessment for insulin resistance (HOMA-IR)day 1Homeostatic model assessment for insulin resistance calculated from insulin and glucose concentration
Carbon dioxide output (VCO2) during exercise testingday 1Cardiopulmonary exercise test on an electronically braked cycle ergometer is performed. With the aid of continuous pulmonary gas exchange analysis VCO2 is collected breath-by-breath and averaged every ten seconds.
Minute ventilation(VE) during exercise testingday 1Cardiopulmonary exercise test on an electronically braked cycle ergometer is performed. With the aid of continuous pulmonary gas exchange analysis VE is collected breath-by-breath and averaged every ten seconds.
Tidal volume (Vt) during exercise testingday 1Cardiopulmonary exercise test on an electronically braked cycle ergometer is performed. With the aid of continuous pulmonary gas exchange analysis Vt is collected breath-by-breath and averaged every ten seconds.
Breathing frequency (BF) during exercise testingday 1Cardiopulmonary exercise test on an electronically braked cycle ergometer is performed. With the aid of continuous pulmonary gas exchange analysis BF is collected breath-by-breath and averaged every ten seconds.
C-reactive proteinday 1Blood analyses
Body weightday 1Body weight (in underwear) is determined using a digital-balanced weighting scale to the nearest 0.1kg
Waist circumferenceday 1Waist circumference will be measured to the nearest 0.1cm using a flexible metric measuring tape with participants barefoot (in underwear) in standing position. Waist circumference is measured at the midpoint between the lower rib margin and the top of the iliac crest.

Countries

Belgium

Contacts

Primary ContactDominique Hansen, Prof.
dominique.hansen@uhasselt.be+32(0)11 292126

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026