Guillot M, Guo T, Ufkes S, Schneider J, Synnes A, Chau V, et al. Mechanical ventilation duration, brainstem development, and neurodevelopment in children born preterm: a prospective cohort study. J Pediatr. 2020;226:87–95.e3.
Vliegenthart RJS, van Kaam AH, Aarnoudse-Moens CSH, van Wassenaer AG, Onland W. Duration of mechanical ventilation and neurodevelopment in preterm infants. Arch Dis Child Fetal Neonatal Ed. 2019;104:F631–f5.
Kersbergen KJ, Leroy F, Išgum I, Groenendaal F, de Vries LS, Claessens NHP, et al. Relation between clinical risk factors, early cortical changes, and neurodevelopmental outcome in preterm infants. Neuroimage. 2016;142:301–10.
Tich SN, Anderson PJ, Hunt RW, Lee KJ, Doyle LW, Inder TE. Neurodevelopmental and perinatal correlates of simple brain metrics in very preterm infants. Arch Pediatr Adolesc Med. 2011;165:216–22.
Velikos K, Soubasi V, Michalettou I, Sarafidis K, Nakas C, Papadopoulou V, et al. Bayley-III scales at 12 months of corrected age in preterm infants: Patterns of developmental performance and correlations to environmental and biological influences. Res Dev Disabil. 2015;45-46:110–9.
Sharek PJ, Horbar JD, Mason W, Bisarya H, Thurm CW, Suresh G, et al. Adverse events in the neonatal intensive care unit: development, testing, and findings of an NICU-focused trigger tool to identify harm in North American NICUs. Pediatrics. 2006;118:1332–40.
Ferraz P, Barros M, Miyoshi M, Davidson J, Guinsburg R. Bundle to reduce unplanned extubation in a neonatal intensive care unit. J Matern Fetal Neonatal Med. 2020;33:3077–85.
Hatch LD, Grubb PH, Lea AS, Walsh WF, Markham MH, Whitney GM, et al. Endotracheal intubation in neonates: a prospective study of adverse safety events in 162 infants. J Pediatr. 2016;168:62–6.e6.
Klugman D, Melton K, Maynord PO, Dawson A, Madhavan G, Montgomery VL, et al. Assessment of an unplanned extubation bundle to reduce unplanned extubations in critically Ill neonates, infants, and children. JAMA Pediatr. 2020;174:e200268.
Article PubMed PubMed Central Google Scholar
Hatch LD, Grubb PH, Markham MH, Scott TA, Walsh WF, Slaughter JC, et al. Effect of anatomical and developmental factors on the risk of unplanned extubation in critically Ill newborns. Am J Perinatol. 2017;34:1234–40.
Article PubMed PubMed Central Google Scholar
Kambestad KK, Huack A, Nair S, Chapman R, Chin S, Langga L, et al. The adverse impact of unplanned extubation in a cohort of critically Ill neonates. Respir Care. 2019;64:1500–7.
Klugman D, Berger JT, Spaeder MC, Wright A, Pastor W, Stockwell DC. Acute harm: unplanned extubations and cardiopulmonary resuscitation in children and neonates. Intensive Care Med. 2013;39:1333–4.
Hatch LD, 3rd, Scott TA, Slaughter JC, Xu M, Smith AH, et al. Outcomes, resource use, and financial costs of unplanned extubations in preterm infants. Pediatrics. 2020;145:56–7
Greenland S, Morgenstern H. Matching and efficiency in cohort studies. Am J Epidemiol. 1990;131:151–9.
Article CAS PubMed Google Scholar
Ng E, Taddio A, Ohlsson A. Intravenous midazolam infusion for sedation of infants in the neonatal intensive care unit. Cochrane Database Syst Rev. 2017;1:Cd002052.
Bellù R, de Waal K, Zanini R. Opioids for neonates receiving mechanical ventilation: a systematic review and meta-analysis. Arch Dis Child Fetal Neonatal Ed. 2010;95:F241–51.
Hatch LD, Rivard M, Bolton J, Sala C, Araya W, Markham MH, et al. Implementing Strategies to Identify and Mitigate Adverse Safety Events: A Case Study with Unplanned Extubations. Jt Comm J Qual Patient Saf. 2019;45:295–303.
Bayley N. Technical Manual of Bayley Scales of Infant and Toddler Development. 3rd ed: Harcourt Assessment; 2006.
Austin PC. A comparison of 12 algorithms for matching on the propensity score. Stat Med. 2014;33:1057–69.
The CRIB (clinical risk index for babies) score: a tool for assessing initial neonatal risk and comparing performance of neonatal intensive care units. The International Neonatal Network. Lancet. 1993;342:193–8.
Austin PC. Balance diagnostics for comparing the distribution of baseline covariates between treatment groups in propensity-score matched samples. Stat Med. 2009;28:3083–107.
Article PubMed PubMed Central Google Scholar
Normand ST, Landrum MB, Guadagnoli E, Ayanian JZ, Ryan TJ, Cleary PD, et al. Validating recommendations for coronary angiography following acute myocardial infarction in the elderly: a matched analysis using propensity scores. J Clin Epidemiol. 2001;54:387–98.
Article CAS PubMed Google Scholar
Liu Q, Shepherd BE, Li C, Harrell FE Jr. Modeling continuous response variables using ordinal regression. Stat Med. 2017;36:4316–35.
Article PubMed PubMed Central Google Scholar
Harrell FE. Regression modeling strategies with applications to linear models, logistic regression, and survival analysis. New York, NY: Springer; 2015. 572 p.
Breeman LD, Jaekel J, Baumann N, Bartmann P, Wolke D. Neonatal predictors of cognitive ability in adults born very preterm: a prospective cohort study. Dev Med Child Neurol. 2017;59:477–83.
Jaekel J, Bartmann P, Schneider W, Wolke D. Neurodevelopmental pathways to preterm children’s specific and general mathematic abilities. Early Hum Dev. 2014;90:639–44.
Tsai W-H, Hwang Y-S, Hung T-Y, Weng S-F, Lin S-J, Chang W-T. Association between mechanical ventilation and neurodevelopmental disorders in a nationwide cohort of extremely low birth weight infants. Res Dev Disabilities. 2014;35:1544–50.
Brown NC, Doyle LW, Bear MJ, Inder TE. Alterations in neurobehavior at term reflect differing perinatal exposures in very preterm infants. Pediatrics (Evanst). 2006;118:2461–71.
Kilbride HW, Aylward GP, Doyle LW, Singer LT, Lantos J. Prognostic neurodevelopmental testing of preterm infants: do we need to change the paradigm? J Perinatol. 2017;37:475–9.
Article CAS PubMed PubMed Central Google Scholar
Burakevych N, McKinlay CJ, Alsweiler JM, Wouldes TA, Harding JE. Bayley-III motor scale and neurological examination at 2 years do not predict motor skills at 4.5 years. Dev Med Child Neurol. 2017;59:216–23.
Taylor GL, Joseph RM, Kuban KCK, Douglass LM, Laux J, Andrews B, et al. Changes in neurodevelopmental outcomes from age 2 to 10 years for children born extremely preterm. Pediatrics. 2021;147:114–22
Neel ML, Conroy S, Srinivas R, Taylor HG, Stark AR, de Silva A, et al. Bayley trajectories predict school readiness better than single assessments in formerly very preterm preschoolers. Pediatr Res. 2023;94:1392–9.
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