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Predictive Value of aEEG and Cerebral Oxygenation on Neurological Outcomes in Newborns With Mild Hypoxic-Ischemic Encephalopathy

Predictive Value of aEEG and Cerebral Oxygenation on Neurological Outcomes in Newborns With Mild Hypoxic-Ischemic Encephalopathy

Recruiting
6 years and younger
All
Phase N/A

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Overview

Newborns with mild hypoxic-ischemic encephalopathy usually do not receive cooling treatment. However, some of these newborns may develop neurological problems later in life. This observational study aims to evaluate whether early brain monitoring and measurements of brain oxygen levels are associated with neurological outcomes in newborns with mild hypoxic-ischemic encephalopathy. Newborns will be monitored during the first 72 hours after birth as part of routine clinical care. Neurological assessments will be performed during early infancy and later follow-up. The findings of this study may help improve early risk assessment and support closer monitoring of newborns who may be at increased risk for unfavorable neurological outcomes.

Description

Perinatal asphyxia resulting from impaired gas exchange may lead to hypoxemia, hypercapnia, and metabolic acidosis, causing injury to the brain and other organs in newborns. Perinatal asphyxia disrupts cerebral autoregulation, leading to primary and secondary energy deficiency, cerebral damage, and hypoxic-ischemic encephalopathy (HIE). HIE remains a significant cause of neonatal mortality and long-term neurological morbidity. HIE is clinically classified as mild, moderate, or severe based on neurological examination findings, most commonly using the Sarnat and Sarnat scoring system. Therapeutic hypothermia has been shown to reduce mortality and morbidity in term and near-term newborns with moderate to severe HIE when initiated within the first 6 hours after birth. However, therapeutic hypothermia is not routinely recommended for newborns with mild HIE due to the lack of sufficient evidence from randomized clinical trials. Although mild HIE is generally associated with a better prognosis, accumulating evidence suggests that a substantial proportion of newborns diagnosed with mild HIE may develop adverse neurodevelopmental outcomes during infancy and early childhood.

Furthermore, the severity of encephalopathy may evolve, and some newborns initially classified as having mild HIE may progress to moderate encephalopathy within the first hours after birth. Early identification of newborns with mild HIE who are at increased risk for neurological deterioration remains challenging, particularly during the critical first 6 hours of life. Continuous bedside brain monitoring techniques may provide valuable prognostic information in this early period. Amplitude-integrated electroencephalography (aEEG) allows continuous assessment of cerebral electrical activity. It helps evaluate the severity of encephalopathy, detect seizures, and predict neurological outcomes in newborns with HIE. Additionally, near-infrared spectroscopy (NIRS) allows for non-invasive monitoring of cerebral oxygenation and cerebral fractional tissue oxygen extraction (cFTOE). However, data regarding the use of NIRS in newborns with mild HIE are limited, particularly during the early postnatal period.

The primary objective of this prospective, multicenter observational cohort study is to investigate the association between early brain monitoring findings and short-term and long-term neurological outcomes in newborns with mild hypoxic-ischemic encephalopathy. Specifically, the study aims to evaluate early neurological findings and neurodevelopmental outcomes up to 24 months of age. Secondarily, this study aims to explore whether early aEEG and NIRS findings may help identify subgroups of newborns with mild HIE who are at higher risk for neurological deterioration and may benefit from closer monitoring and follow-up.

Eligibility

Inclusion Criteria:

  1. Gestational age and postnatal age:

    Gestational age ≥ 36 0/7 weeks and enrollment within the first 6 hours after birth.

  2. Blood gas criteria

    Umbilical cord or postnatal (≤ 1 hour of life) blood gas showing:

    1. pH ≤ 7.00 or base deficit ≥ 16 mmol/L
    2. OR, if pH is 7.01-7.15 or base deficit is 10-15.9 mmol/L, the presence of both:
      • An acute perinatal event, and
      • Apgar score ≤ 5 at 10 minutes or ongoing resuscitation at 10 minutes of life, including the need for positive pressure ventilation.

( Evidence of an acute peripartum and intrapartum asphyxia event, defined by at least one of the following: Uterine rupture, placental abruption, umbilical cord prolapse, rupture, tight nuchal cord, maternal hemorrhage, trauma, or cardiopulmonary arrest, vasa previa, category III fetal heart rate tracing, including having either a sinusoidal pattern or absent baseline variability plus recurrent late decelerations, recurrent variable decelerations, or bradycardia.) 3. Clinical evidence of encephalopathy Findings consistent with Sarnat and Sarnat Stage 1 (mild) encephalopathy. Mild, moderate, or severe abnormalities may be present in at least one of the six categories (level of consciousness, spontaneous activity, posture, tone, primitive reflexes \[suck and Moro\], autonomic nervous system), provided that no more than two categories show moderate or severe findings.

Exclusion Criteria:

Newborns meeting any of the following criteria will be excluded from the study:

  1. Normal neurological examination Newborns with a completely normal neurological examination according to Sarnat and Sarnat staging.
  2. Moderate or severe encephalopathy within the first 6 hours of life
    1. Clinical findings consistent with moderate or severe encephalopathy during the first 6 hours after birth.
    2. Presence of clinical seizures.
    3. aEEG findings consistent with moderate or severe encephalopathy requiring therapeutic hypothermia.
    4. Evidence of electrographic seizure activity on aEEG monitoring.
  3. Sarnat and Sarnat criteria for moderate-severe encephalopathy Findings consistent with moderate or severe encephalopathy in three or more Sarnat categories, classified as moderate or severe hypoxic-ischemic encephalopathy.
  4. Contraindications to therapeutic hypothermia, including:
    • Evaluation occurring more than 6 hours after birth.
    • Gestational age \< 36 weeks or birth weight \< 2000 g.
    • Severe or extensive intracranial parenchymal hemorrhage.
    • Severe, life-threatening coagulopathy.
    • Intracerebral infarction.
    • Chromosomal abnormalities (e.g., trisomy 13 or 18) or major congenital anomalies involving multiple organ systems.
  5. Lack of parental informed consent
  6. Cyanotic congenital heart disease
  7. Metabolic encephalopathy Encephalopathy due to metabolic disorders not related to hypoxic-ischemic events.
  8. Other conditions associated with encephalopathy unrelated to acute hypoxia
    • Abnormal fetal growth.
    • Maternal infections.
    • Fetomaternal hemorrhage.
    • Severe neonatal sepsis.
    • Chronic placental lesions.

Study details
    Hypoxic-Ischemic Encephalopathy Mild

NCT07393620

Uludag University

13 May 2026

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