4.6 Article

A novel method for assessing cerebral autoregulation in preterm infants using transfer function analysis

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PEDIATRIC RESEARCH
卷 79, 期 3, 页码 453-459

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SPRINGERNATURE
DOI: 10.1038/pr.2015.238

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  1. Intellectual and Developmental Disabilities Research Center (IDDRC) at Washington University [NIH/NICHD P30 HD062171]
  2. Washington University Institute of Clinical and Translational Sciences KL2 Training Program [NIH/NCATS KL2 TR000450]
  3. Barnes-Jewish Hospital Foundation
  4. Washington University Institute of Clinical and Translational Sciences Clinical and Translational Funding Program [NIH/NCATS UL1 TR000448]

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Background: Autoregulatory dysfunction is an important contributor to brain injury in premature infants, particularly intraventricular hemorrhage (IVH). The autoregulatory system acts as a filter that dampens the systemic blood flow to follow a normal cerebral perfusion profile. Methods: Simultaneous arterial blood pressure and cerebral near-infrared spectroscopy (NIRS) data were collected from infants born before 28 wk estimated gestational age. The resulting data were preprocessed and then divided into nonoverlapping 20-min epochs. The transfer function estimate was calculated to determine dampening ability. Results: Sixty-two infants were prospectively recruited with a mean estimated gestational age of 25.4 +/- 1.3 wk and birth weight of 832 +/- 199 g. 67% were male, 24/62 had IVH, 17/62 received dopamine, 47/62 had antenatal steroid exposure, and 22/62 received fentanyl. Advancing estimated gestational age and birth weight z-score predicted stronger dampening while African-American race and IVH of any grade predicted weaker dampening. Conclusion: This preliminary report suggests an impairment in dampening ability associated with immaturity, decreased birth weight z-score, and African-American race. Decreased dampening is also associated with IVH, although these results cannot distinguish between decreased dampening as an antecedent or sequela of IVH. These observations should be studied in a larger sample.

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