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A Piglet Model of Neonatal Hypoxic-Ischemic Encephalopathy
Published on: May 16, 2015
Insula Injury and State Change Predict Outcome in Cooled Neonatal Hypoxic Ischemic Encephalopathy Patients: A Pilot
Sylvia Edoigiawerie1, Henry David2, Julia Henry3
1Biological Sciences Division, The University of Chicago Pritzker School of Medicine, Chicago, Illinois.
Background:
To determine early electroencephalography (EEG) and magnetic resonance imaging (MRI) features significantly associated with functional outcome in infants with hypoxic ischemic encephalopathy (HIE). To identify specific brain injury patterns associated with poor outcome and compare their prognostic efficacy to specific brain injury patterns.
Methods:
EEG characteristics, MRI injury patterns, and outcomes were evaluated in 23 term neonates (mean gestational age: 38 weeks) who underwent cooling and were confirmed to develop HIE. EEG features were extracted from recordings between 24 and 26 hours of life during therapeutic hypothermia. MRIs were scored for injury within the first 1.5 weeks of life. Functional outcomes were graded from 0 (best) to 5 (worst). The relationships between EEG or MRI features and outcomes were evaluated using ordinal logistic regression analysis.
Results:
Of the features assessed, lack of EEG state change at 24 hours of life and insula injury on MRI were most associated with poor functional outcome. When combined in a multivariate model, regression analysis suggested both features were independently associated with poor outcomes. Injury to the insula, rather than injury to the basal ganglia as previously suggested, was the strongest predictor of poor outcomes.
Conclusions:
MRI evidence of insular injury within the first 1.5 weeks of life and lack of EEG state change at 24 hours predict poorer outcomes in HIE. These findings suggest that insular injury may be a more sensitive indicator of overall injury burden associated with poor outcomes than deep gray matter or other cortical involvement.
