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A new standardized treadmill walking test requiring low motor skills in children aged 4-10 years
Nathalie Wäffler-Kammermann1, Ruth Stauffer Lacorcia, Markus Wettstein
1Office of Nursing, Medical Technical and Medical Therapeutic Administration Physiotherapy Development and Research, University Hospital Berne, Inselspital, Berne, Switzerland.
Insights
A new treadmill walking test was developed for children aged 4-10 years, proving feasible and repeatable for assessing exercise capacity and physical exhaustion in pediatric respiratory health.
Area of Science:
- Pediatric Exercise Physiology
- Respiratory Medicine
- Clinical Exercise Testing
Background:
- Parental reports of exercise intolerance in young children with respiratory diseases lack objective verification.
- A standardized, low-sensorimotor skill exercise protocol is needed for this age group.
Purpose of the Study:
- To develop and validate a standardized treadmill walking test for children aged 4-10 years.
- To assess feasibility, safety, and repeatability of the test for measuring physical exhaustion.
Main Methods:
- A prospective, cross-sectional pilot study involving 33 healthy children aged 4-10 years.
- A standardized treadmill walking test with increasing intensity to maximal exhaustion.
- Measurement of gas exchange, heart rate, lactate, and spirometry; statistical analysis for group and test-retest differences.
Main Results:
- The treadmill test demonstrated feasibility and good repeatability across most parameters.
- All participants achieved a high level of physical exhaustion.
- Significant differences in absolute VO2 and VCO2 at peak exhaustion were observed between age groups.
Conclusions:
- The newly designed treadmill walking test is feasible, safe, and repeatable for children aged 4-10 years.
- This test shows potential for monitoring exercise capacity in pediatric populations.
- Further studies will explore various applications and test modifications.
Abstract:
Exercise intolerance may be reported by parents of young children with respiratory diseases. There is, however, a lack of standardized exercise protocols which allow verification of these reports especially in younger children. Consequently the aims of this pilot study were to develop a standardized treadmill walking test for children aged 4-10 years demanding low sensorimotor skills and achieving high physical exhaustion. In a prospective experimental cross sectional pilot study, 33 healthy Caucasian children were separated into three groups: G1 (4-6 years, n = 10), G2 (7-8 years, n = 12), and G3 (9-10 years, n = 11). Children performed the treadmill walking test with increasing exercise levels up to peak condition with maximal exhaustion. Gas exchange, heart rate, and lactate were measured during the test, spirometry before and after. Parameters were statistically calculated at all exercise levels as well as at 2 and 4 mmol/L lactate level for group differences (Kruskal-Wallis H-test, alpha = 0.05; post hoc: Mann-Whitney U-test with Bonferroni correction alpha = 0.05/n) and test-retest differences (Wilcoxon-rank-sum test) with SPSS. The treadmill walking test could be demonstrated to be feasible with a good repeatability within groups for most of the parameters. All children achieved a high exhaustion level. At peak level under exhaustion condition only the absolute VO2 and VCO2 differed significantly between age groups. In conclusion this newly designed treadmill walking test indicates a good feasibility, safety, and repeatability. It suggests the potential usefulness of exercise capacity monitoring for children aged from early 4 to 10 years. Various applications and test modifications will be investigated in further studies.
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