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The influence of reducing fever on blood oxygen saturation in children
Shmuel Goldberg1, Shmuel Heitner2, Francis Mimouni3
1Pediatric Pulmonology Institute, Shaare Zedek Medical Center, Hebrew University Medical School, P.O.B. 3235, 91301, Jerusalem, Israel. sgoldberg@szmc.org.il.
Insights
Fever in children can lower blood oxygen saturation (SpO2). This effect is more pronounced in those with borderline low oxygen levels, highlighting the importance of monitoring oxygen saturation in febrile children.
Area of Science:
- Pediatrics
- Physiology
- Emergency Medicine
Background:
- Laboratory studies indicate elevated blood temperature reduces hemoglobin's oxygen affinity.
- The clinical impact of fever on oxygen saturation in children remains under-investigated.
Purpose of the Study:
- To assess the effect of fever (pyrexia) on oxygen saturation (SpO2) in children presenting to the emergency department.
- To compare observed SpO2 changes with predictions from the oxyhemoglobin dissociation curve (ODC).
Main Methods:
- Included normoxemic children with temperatures ≥38.5°C, excluding those with respiratory diseases.
- Measured SpO2 before and after antipyretic treatment.
- Analyzed changes in body temperature and SpO2.
Main Results:
- Thirty-four children completed the study; mean presentation temperature was 39.17°C and mean SpO2 was 96.15%.
- Antipyretic treatment reduced temperature by a mean of 1.71°C and increased SpO2 by a mean of 0.95%.
- In children with temperature reduction ≥1.5°C, SpO2 increased by 1.45%, aligning with ODC predictions.
Conclusions:
- Pyrexia is linked to reduced SpO2 in normoxemic children.
- The impact of fever on SpO2 is likely greater in children with low-normal oxygen saturation due to the ODC's non-linear nature.
- Clinicians should consider the effect of fever on oxygen saturation, particularly in patients with borderline hypoxia.
Abstract:
Laboratory-based studies on the oxyhemoglobin dissociation curve (ODC) suggest that high blood temperature decreases the affinity of hemoglobin for oxygen. The aim of the study was to evaluate the influence of pyrexia on oxygen saturation (SpO2) in children presenting to the emergency department. Normoxemic children with body temperature at or above 38.5 °C were included. Patients with a dynamic respiratory disease were excluded. SpO2 was measured before and after antipyretic treatment. The changes in body temperature and SpO2 were assessed and compared to the changes predicted from the ODC. Thirty-four children completed the study. Mean temperature at presentation was 39.17 ± 0.549 °C and mean SpO2 was 96.15 ± 2.21%. The mean decrease in temperature after antipyretic treatment was 1.71 ± 0.67 °C and mean increase in SpO2 was 0.95 ± 1.76%. Among children in whom pyrexia decreased by 1.5 °C or more, the mean increase in SpO2 was 1.45 ± 1.57%. The measured increase in SpO2 was close to the increase anticipated from the ODC.
Conclusion:
Pyrexia was associated with decreased SpO2 in normoxemic children. The influence of pyrexia in children with low-normal oxygen saturation is expected to be much higher because of the non-linear shape of the ODC. Physicians treating patients with fever should be aware of this effect, especially in patients with borderline hypoxia. What is Known: • High blood temperature decreases the affinity of oxygen to hemoglobin. • It is not known whether fever would decrease SpO 2 . What is New: • Fever is associated with decreased SpO 2 .
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