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Updated: Jun 3, 2026

Non-invasive Optical Measurement of Cerebral Metabolism and Hemodynamics in Infants
Published on: March 14, 2013
Multi-Organ Dysfunction in Neonatal Hypoxic Ischemic Encephalopathy and Brain Magnetic Resonance Imaging Outcomes
Spoorthi Jagadish1, M Bridget Zimmerman2, Joseph Glykys3
1Child Neurology Residency Program, Stead Family Department of Pediatrics, The University of Iowa, Iowa City, Iowa.
Insights
Neonatal encephalopathy treated with hypothermia is linked to multi-organ dysfunction (MOD). More organ issues correlate with hypoxic-ischemic encephalopathy (HIE) brain MRI changes, especially severe neurological or cardiac dysfunction.
Area of Science:
- Neonatal Neurology
- Pediatric Cardiology
- Neonatal Intensive Care
Background:
- Hypoxic-ischemic encephalopathy (HIE) in neonates often leads to multi-organ dysfunction (MOD).
- Evaluating the link between MOD and HIE-related brain MRI findings in neonates undergoing therapeutic hypothermia is crucial.
Purpose of the Study:
- To assess the association between multi-organ dysfunction (MOD) and hypoxic-ischemic encephalopathy (HIE)-related brain MRI findings in neonates receiving therapeutic hypothermia.
- To determine if the severity or number of organ system involvements predicts HIE-related MRI abnormalities.
Main Methods:
- Retrospective cohort study of neonates with encephalopathy who received therapeutic hypothermia.
- Classification of neonates based on normal or HIE-related changes on brain MRI.
- Assessment of multi-organ dysfunction (MOD) based on organ system involvement.
Main Results:
- 40% of neonates showed HIE-related MRI findings; 56% had MOD.
- Neonates with HIE MRI changes were more likely to have MOD (74% vs. 45%).
- Increased organ dysfunctions correlated with higher odds of abnormal brain MRI, particularly with severe neurological or cardiac dysfunction.
Conclusions:
- A higher number of organ dysfunctions in neonates undergoing therapeutic hypothermia is associated with HIE-related brain MRI changes.
- Severe neurological dysfunction and cardiac dysfunction present the highest risk for HIE-related MRI findings.
Background:
Neonates with hypoxic-ischemic encephalopathy (HIE) often exhibit multi-organ dysfunction (MOD). We evaluated the association between MOD (defined as involvement of two or more organ systems) and HIE-related brain magnetic resonance imaging (MRI) findings among neonates with neonatal encephalopathy who underwent therapeutic hypothermia.
Methods:
Retrospective cohort study of all newborns admitted to the University of Iowa neonatal intensive care unit from January 1, 2008, to June 30, 2022, with encephalopathy who received therapeutic hypothermia. Neonates were classified as having normal or HIE-related changes on MRI.
Results:
Of 222 newborns, 40% exhibited HIE-related MRI findings. MOD was observed in 56% of all patients. Respiratory issues occurred in 46% of neonates, hepatic and severe neurological dysfunction, defined as seizures or burst suppression in 40%, and cardiac dysfunction in 37%. Severe neonatal encephalopathy was more likely to be associated with MOD. Neonates with HIE changes on MRI were more likely to have MOD than those without (74% vs 45%, P < 0.0001). Neonates with four or more organ dysfunctions had a higher likelihood of abnormal brain MRI (odds ratio = 7.44; 95% confidence interval [CI] 3.51-15.76), and MOD was associated with a greater frequency of global injury on MRI. A logistic regression model showed that the odds ratio for having a brain MRI with HIE findings was 6.63 (95% CI 3.24-13.55, P < 0.0001) with severe neurological dysfunction and 1.95 (95% CI 0.96-3.97, P = 0.065) with cardiac dysfunction.
Conclusions:
A greater number of organ dysfunctions in neonates undergoing therapeutic hypothermia is associated with HIE-related changes on brain MRI. The highest risk is observed in patients with severe neurological or cardiac dysfunction.
