Scientific Reports· 2026Q1
Heart rate response and clinical determinants of Glittre activities of daily living test performance in pediatrics with cystic fibrosis
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- 2026year
Short summary
In pediatric cystic fibrosis (CF) patients, performance on the Pediatric Glittre Activities of Daily Living Test (TGlittre-P) is not significantly different in heart rate response compared to the 6-minute walk test (6MWT), but is strongly predicted by lung function (FEV1 z-score) and physical strength.
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Key points
- Peak heart rate response during TGlittre-P and 6MWT showed no significant difference in pediatric CF patients.
- TGlittre-P duration correlated with 6MWT distance, lung function (FEV1, FVC), respiratory pressures (MIP, MEP), and muscle strength (HGS, QMS).
- FEV1 z-score, height z-score, and sex were independent predictors of TGlittre-P duration (Adjusted R2 = 0.402).
- Airway obstruction (indicated by FEV1 z-score) was the strongest predictor of TGlittre-P performance.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract The Pediatric Glittre Activities of Daily Living Test (TGlittre-P) is a field test designed to assess the functional performance of activities of daily living (ADL) in pediatric patients with cystic fibrosis (CF). However, the effects of TGlittre-P on heart rate response and the clinical determinants of test performance in this population remain insufficiently understood. To compare the heart rate response elicited by the TGlittre-P and the six-minute walk test (6MWT), and to identify pulmonary and extrapulmonary factors associated with TGlittre-P performance in pediatric patients with CF. Fifty-four pediatric patients with CF (mean age = 14.46 ± 2.16 years, 31 females and 23 males) were included in this cross-sectional study. ADL performance was assessed using the TGlittre-P, and functional capacity was assessed using the 6MWT. Pulmonary function, including forced expiratory volume in one second (FEV₁) and forced vital capacity (FVC), maximal inspiratory and expiratory pressure (MIP and MEP, respectively), handgrip strength (HGS %) and quadriceps muscle strength (QMS %) were measured. A multiple linear regression analysis model was used to determine independent predictors of TGlittre-P performance. The mean TGlittre-P duration was 2.00 ± 0.53 min. There was agreement between recorded peak heart rate (HRpeak) responses during the TGlittre-P and 6MWT (mean difference: -2.33%, with limits of agreement ranging from − 41.19 to 36.52). HRpeak (bpm), HRpeak (% predicted HRmax), and pre-to-post changes in systolic and diastolic blood pressure (mmHg), oxygen saturation (%), and perceived effort were not different between TGlittre-P and 6MWT (p > 0.05). TGlittre-P duration (min) correlated with 6MWT distance (m), FEV1 (%), FEV1z-score, FVC (%), FVC z-score, MIP (cmH2O), MEP (cmH2O), HGS (%) and QMS (%) (p < 0.05). The FEV1 z-score, height z-score and sex were predictors for TGlittre-P duration (min) [Adjusted R2 = 0.402, F(3, 53) = 11.755, p < 0.001, constant = 1.625]. No significant differences were observed in the measured heart rate response between the TGlittre-P and 6MWT. TGlittre-P performance is strongly associated with pulmonary function and respiratory and peripheral muscle strength. Airway obstruction was the strongest predictor of TGlittre-P performance in this population.
The authors' abstract, as published at the source. Scientific Reports, 2026 · DOI ↗
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Field: Pulmonary and Respiratory Medicine
Pulmonary and Respiratory MedicineMedicine