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1.
Pediatr Pulmonol ; 52(1): 84-90, 2017 01.
Article in English | MEDLINE | ID: mdl-27362468

ABSTRACT

STUDY OBJECTIVES: Sleep disruption is increasingly recognized in hospitalized patients. Impaired sleep is associated with measureable alterations in neurodevelopment. The neonatal intensive care unit (NICU) environment has the potential to affect sleep quality and quantity. We aimed: (i) to determine the frequency and duration of hands-on care, and its impact on sleep, for NICU patients; and (ii) to assess the incidence of respiratory events associated with handling for a cohort of sick neonates. METHODS: Term and near-term neonates admitted to the NICU and at risk for cerebral dysfunction due to severity of illness or clinical suspicion for seizures underwent attended, bedside polysomnography. Continuous polysomnogram segments were analyzed and data on handling, infant behavioral state, and associated respiratory events were recorded. RESULTS: Video and polysomnography data were evaluated for 25 infants (gestational age 39.4 ± 1.6 weeks). The maximum duration between handling episodes for each infant was 50.9 ± 26.2 min, with a median of 2.3 min between contacts. Handling occurred across all behavioral states (active sleep 29.5%; quiet sleep 23.1%; awake 29.9%; indeterminate 17.4%; P = 0.99). Arousals or awakenings occurred in 57% of contacts with a sleeping infant. Hypopnea, apnea, and oxygen desaturation occurred with 16%, 8%, and 19.5% of contacts, respectively. Hypopnea was most likely to occur following contact with infants in active sleep (28%; P < 0.001). CONCLUSIONS: Infants in the NICU experience frequent hands-on care, associated with disturbances of sleep and respiration. The potential health and developmental impact of these disturbances merits study, as strategies to monitor sleep and minimize sleep-disordered breathing might then improve NICU outcomes. Pediatr Pulmonol. 2017;52:84-90 © 2016 Wiley Periodicals, Inc.


Subject(s)
Intensive Care Units, Neonatal , Polysomnography , Respiration , Sleep Apnea Syndromes/therapy , Sleep/physiology , Female , Gestational Age , Humans , Infant , Infant, Newborn , Male , Sleep Apnea Syndromes/physiopathology
2.
J Child Neurol ; 30(11): 1526-31, 2015 Oct.
Article in English | MEDLINE | ID: mdl-25724376

ABSTRACT

Amplitude-integrated EEG (aEEG) is a commonly used predictor of outcome after hypoxic ischemic encephalopathy. Cerebral and systemic near-infrared spectroscopy and acute kidney injury might also have prognostic value. The authors monitored neonates with aEEG, cerebral and systemic near-infrared spectroscopy during therapeutic hypothermia, assigned an acute kidney injury stage, and measured neurodevelopmental outcome. For 18 infants, cerebral near-infrared spectroscopy variables did not differentiate between those with favorable (n = 13) versus adverse (death or moderate-severe disability; n = 5) 18-month outcomes. However, systemic rSO2 variability was higher during hours 48-72 of cooling among those with favorable outcomes (.02 < P < .03). Mean aEEG amplitude during hours 24 to 48 of cooling was higher among those with good outcomes (.027 < P < .032). The aEEG lower margin was also higher during hours 12 to 48 for those with good outcomes (.014 < P < .035). Acute kidney injury did not predict outcome (P > .05). aEEG is a useful prognostic tool for outcomes after neonatal hypoxic ischemic encephalopathy, but the role of near-infrared spectroscopy in the hypothermia-treated population remains uncertain.


Subject(s)
Brain/physiopathology , Electroencephalography , Hypothermia, Induced , Hypoxia-Ischemia, Brain/diagnosis , Hypoxia-Ischemia, Brain/therapy , Spectroscopy, Near-Infrared , Electroencephalography/methods , Female , Follow-Up Studies , Humans , Hypothermia, Induced/methods , Hypoxia-Ischemia, Brain/physiopathology , Infant, Newborn , Male , Pilot Projects , Prognosis , Spectroscopy, Near-Infrared/methods , Time Factors , Treatment Outcome
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