Testing impact of perinatal inflammation on cerebral autoregulation in preterm neonates: evaluation of a noninvasive

Gitte Holst Hahn1

  • 1Department of Neonatology, Copenhagen University Hospital, Rigshospitalet, Denmark. gitte.holst.hahn@gmail.com.

Insights

This study investigated cerebral autoregulation in preterm infants and piglets, finding that while a non-invasive method shows potential, its precision is limited. Perinatal inflammation did not significantly impair autoregulation, but dopamine therapy caused a concerning mismatch in piglets.

Area of Science:

  • Neonatal Physiology
  • Cerebrovascular Regulation
  • Neuroprotection

Background:

  • Preterm infants face high rates of neurodevelopmental impairment, necessitating a deeper understanding of brain injury mechanisms.
  • Cerebral autoregulation, crucial for maintaining stable cerebral perfusion, is often impaired in preterm neonates, increasing brain injury risk.
  • The potential link between impaired cerebral autoregulation and perinatal inflammation as a cause of brain injury requires further investigation.

Purpose of the Study:

  • To evaluate the precision and validity of a non-invasive method for assessing cerebral autoregulation in very preterm infants and newborn piglets.
  • To investigate the association between perinatal inflammation (antenatal and postnatal) and cerebral autoregulation in preterm neonates.
  • To examine the effects of hypovolemia and dopamine therapy on cerebral autoregulation in a piglet model.

Main Methods:

  • Utilized frequency analysis of spontaneous changes in arterial blood pressure and cerebral oxygenation (near-infrared spectroscopy) in 22 preterm infants.
  • Validated the non-invasive method against a conventional measure in a piglet model.
  • Measured cerebral autoregulation in 60 preterm infants, assessing antenatal inflammation (foetal vasculitis) and postnatal inflammation (interleukin-6).

Main Results:

  • Reliable detection of impaired cerebral autoregulation in preterm infants requires several hours of monitoring; precision can be improved by weighting measurements.
  • Neither antenatal nor postnatal inflammation significantly affected cerebral autoregulation, though a trend towards impaired autoregulation was observed with antenatal inflammation.
  • Hypovolemia alone did not significantly affect cerebral autoregulation in piglets, but dopamine therapy induced a mismatch between cerebral perfusion and oxygenation.

Conclusions:

  • The non-invasive method for assessing cerebral autoregulation has potential for clinical research but requires improved precision for clinical application.
  • In preterm infants, cerebral blood flow is only moderately affected by arterial blood pressure variations if hypotension due to inflammation is prevented.
  • Dopamine therapy in neonates may cause an unexplained cerebrovascular mismatch, warranting further investigation.

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