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Skeletal Muscle Neurovascular Coupling, Oxidative Capacity, and Microvascular Function with 'One Stop Shop' Near-infrared Spectroscopy
Published on: February 20, 2018
Tissue oxygenation in peripheral muscles and functional capacity in cystic fibrosis: a cross-sectional study
Cristiane Cenachi Coelho1,2, Evanirso da Silva Aquino1, Ana Luiza Reis Diniz3
1Hospital Infantil João Paulo II - FHEMIG, Brazil.
Insights
Children and adolescents with cystic fibrosis (CF) show impaired muscle oxygen use and slower recovery during exercise compared to healthy peers. This highlights potential issues with oxygen delivery and utilization in CF patients.
Area of Science:
- Exercise Physiology
- Pediatric Pulmonology
- Muscle Physiology
Background:
- Cystic fibrosis (CF) impacts skeletal muscle function and exercise capacity in children and adolescents.
- Peripheral muscle behavior and tissue oxygenation in pediatric CF populations require further investigation.
Purpose of the Study:
- To compare peripheral muscle tissue oxygenation and physical conditioning in children and adolescents with CF versus demographically matched healthy controls.
- To evaluate functional capacity using the modified shuttle test (MST) and its association with near-infrared spectroscopy (NIRS) measures.
Main Methods:
- Comparison of 124 participants (cystic fibrosis group vs. healthy group) using Mann-Whitney U test.
- Assessment of functional capacity via MST and tissue oxygenation using NIRS.
- Correlation analysis between performance and NIRS data using Spearman's correlation coefficient.
Main Results:
- CF group exhibited lower MST performance, shorter walking distances, and less efficient walking economy.
- CF group showed greater deoxyhemoglobin concentration and faster reduction in tissue oxygen saturation.
- CF group presented lower respiratory and heart rates post-exercise with prolonged heart rate recovery time.
Conclusions:
- Children and adolescents with CF demonstrate impaired muscle oxygen extraction and slower hemodynamic recovery.
- Findings suggest deficiencies in oxygen supply, uptake, and transport impacting functional capacity in pediatric CF.
- Peripheral muscle tissue oxygenation and recovery dynamics are significantly affected in CF during physical exertion.
New Findings:
What is the central question of this study? How do peripheral muscle tissue oxygenation and physical conditioning levels of children and adolescents with cystic fibrosis compare to demographically matched controls? What is the main finding and its importance? Children and adolescents with cystic fibrosis consumed more oxygen, more quickly and exhibited slower recovery, demonstrating that there may have been deficiencies in oxygen supply related to both oxygen uptake and oxygen transport.
Abstract:
Cystic fibrosis affects skeletal muscle performance and functional capacity. However, it is currently unclear how peripheral muscle behaviour is affected, especially in children and adolescents. To examine this, we compared tissue oxygenation of children and adolescents with cystic fibrosis against healthy volunteers. We also evaluated the functional capacity of participants via the modified shuttle test (MST) and assessed for associations between performance and near-infrared spectroscopy. A total of 124 participants enrolled. Participants were divided into either the cystic fibrosis group (CFG) or the healthy group (HG). Statistical comparisons between groups were evaluated with the Mann-Whitney U test and associations with functional capacity were evaluated using Spearman's correlation coefficient. CFG volunteers scored lower on the MST compared to the HG. They walked shorter distances (P = 0.001) with less efficiency because they performed the tests with a less efficient walking economy (P = 0.001) and a greater deoxyhaemoglobin concentration (P = 0.001). Further, they experienced reduced tissue oxygen saturation (P = 0.037) faster than the HG. As a result, they presented lower respiratory (P = 0.001) and lower heart (P = 0.001) rate values at the end of the MST, with a longer post-test heart rate recovery time (P = 0.005). There was a significant association between deoxygenation time and functional capacity. The CFG consumed more oxygen, more quickly, with a slower recovery, reflecting impairments in the dynamics of muscle oxygen extraction. The results suggest differences in functional capacity and haemodynamic recovery in children and adolescents with cystic fibrosis.
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