Background: Commonly used methods of CTG classification do not reliably predict neonatal hypoxic-ischemic encephalopathy (HIE).
Objective: To examine whether a relationship exists between the types of hypoxia as identified on the cardiotocograph using novel physiology-based CTG classification and patterns of injury on neonatal cerebral MRI and later neurodevelopmental outcomes.
Study Design: A retrospective study of term-born infants admitted to four neonatal units with HIE as part of a brain injury biomarkers study between January 2014 and December 2015.
Introduction: In the event of fetal hypoxia-ischemia, circulation to the brain and central organs is thought to be preserved. The objective of the study was to explore the relationship between the presence of brain injury on MRI and multi-organ involvement, as reflected in routinely collected laboratory (lab) values in babies who have undergone therapeutic hypothermia (TH) after hypoxic-ischemic encephalopathy (HIE).
Methods: Peak and trough values, and age at peak/trough, were obtained for 10 lab markers collected for clinical care, representing hematopoiesis, coagulation, inflammation, hepatic, and renal function, from 71 consecutively recruited newborns from four tertiary neonatal centers undergoing TH.
Objective: In the trials, a substantial proportion of newborns who underwent therapeutic hypothermia (TH) had an adverse outcome after hypoxic-ischaemic encephalopathy (HIE). Cooled babies were noted to have fewer cerebral lesions on MRI but when present lesions were predictive of adverse outcome. We investigate the predictive value of cerebral MRI in babies who undergo cooling in the clinical setting outside of the clinical trials in a prospective UK cohort.
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