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Paediatric COVID-19 Outcomes: Haematology Parameters, Mortality Rates, and Hospitalization Duration
Abdulrahman Alshalani1, Badi A Alotaibi2,3, Jehad A Aldali4
1Chair of Medical and Molecular Genetics Research, Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Saud University, Riyadh 12372, Saudi Arabia.
Insights
Age is a critical factor in pediatric COVID-19 mortality, with older children experiencing lower death rates. Hematology parameters like platelet counts and coagulation measures show complex correlations with COVID-19 status, age, and sex in children.
Area of Science:
- Pediatric Hematology
- Infectious Disease Epidemiology
- Clinical Biochemistry
Background:
- The COVID-19 pandemic has significantly impacted global healthcare systems, prompting research into factors influencing patient outcomes.
- Understanding pediatric COVID-19 requires investigating the interplay between hematological markers and clinical outcomes.
Purpose of the Study:
- To examine the relationships between key hematology parameters, hospital length of stay (LOS), and mortality rates in pediatric COVID-19 patients.
- To identify independent predictors of mortality and LOS in children with COVID-19.
Main Methods:
- Multivariate regression models were employed to analyze relationships between independent variables (COVID-19 status, age, sex) and dependent variables (mortality, LOS, coagulation parameters, WBC count, RBC parameters).
- Statistical significance of coefficients was assessed to determine the impact of independent variables on outcomes.
Main Results:
- Age was a significant predictor of mortality, with rates decreasing per age group. Both COVID-19 status and age inversely correlated with LOS, suggesting milder illness in children.
- Platelet counts decreased with age and in males. Significant correlations were found between COVID-19 status, age, gender, and coagulation measures (prothrombin time, D-dimer).
- COVID-19 positive patients had lower white blood cell (WBC) counts, while males had higher red blood cell (RBC) counts. Correlations were observed with red cell distribution width, mean corpuscular volume, and mean corpuscular hemoglobin.
Conclusions:
- Age is a crucial determinant of mortality in pediatric COVID-19 cases.
- Hematological parameters, including platelet counts and coagulation markers, exhibit complex interactions with COVID-19 status, age, and sex in children.
- The study highlights the importance of age and provides insights into hematological variations in pediatric COVID-19, underscoring the complexity of disease outcomes.
Abstract:
The global COVID-19 pandemic has strained healthcare systems around the globe, necessitating extensive research into the variables that affect patient outcomes. This study examines the relationships between key haematology parameters, duration of hospital stay (LOS), and mortality rates in COVID-19 cases in paediatric patients. Researchers analyse relationships between independent variables (COVID-19 status, age, sex) and dependent variables (mortality, LOS, coagulation parameters, WBC count, RBC parameters) using multivariate regression models. Although the R-square values (0.6-3.7%) indicate limited explanatory power, coefficients with statistical significance establish the impact of independent variables on outcomes. Age emerges as a crucial predictor of mortality; the mortality rate decreases by 1.768% per age group. Both COVID-19 status and age have an inverse relationship with length of stay, emphasising the milder hospitalisation of children. Platelet counts decline with age and male gender, potentially revealing the influence of COVID-19 on haematological markers. There are significant correlations between COVID-19 status, age, gender and coagulation measures. Lower prothrombin time and D-dimer concentrations in elder COVID-19 patients are indicative of distinct coagulation profiles. WBC and RBC parameters exhibit correlations with variables: COVID-19-positive patients have lower WBC counts, whereas male COVID-19-positive patients have higher RBC counts. In addition, correlations exist between independent variables and the red cell distribution width, mean corpuscular volume, and mean corpuscular haemoglobin. However, there is no correlation between mean corpuscular haemoglobin concentration and outcomes, indicating complex interactions between haematological markers and outcomes. In essence, this study underlines the importance of age in COVID-19 mortality, provides novel insights into platelet counts, and emphasises the complexity of the relationships between haematological parameters and disease outcomes.
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