A pilot cohort study of cerebral autoregulation and 2-year neurodevelopmental outcomes in neonates with hypoxic-ischemic encephalopathy who received therapeutic hypothermia

[1]  Marek Czosnyka,et al.  Optimal Cerebral Perfusion Pressure Management at Bedside: A Single-Center Pilot Study , 2015, Neurocritical Care.

[2]  R. Koehler,et al.  Rewarming from Therapeutic Hypothermia Induces Cortical Neuron Apoptosis in a Swine Model of Neonatal Hypoxic–Ischemic Encephalopathy , 2015, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[3]  R. Koehler,et al.  Apparent Diffusion Coefficient Scalars Correlate with Near-Infrared Spectroscopy Markers of Cerebrovascular Autoregulation in Neonates Cooled for Perinatal Hypoxic-Ischemic Injury , 2015, American Journal of Neuroradiology.

[4]  Rong Zhang,et al.  The "neurovascular unit approach" to evaluate mechanisms of dysfunctional autoregulation in asphyxiated newborns in the era of hypothermia therapy. , 2014, Early human development.

[5]  Tanja Alderliesten,et al.  Non-invasive MRI measurements of venous oxygenation, oxygen extraction fraction and oxygen consumption in neonates , 2014, NeuroImage.

[6]  I. Izbudak,et al.  MR imaging of hypoxic-ischemic injury in term neonates: pearls and pitfalls. , 2014, Radiographics : a review publication of the Radiological Society of North America, Inc.

[7]  N. Marlow,et al.  Effects of hypothermia for perinatal asphyxia on childhood outcomes. , 2014, The New England journal of medicine.

[8]  A. Bos,et al.  Near-infrared spectroscopy to detect absence of cerebrovascular autoregulation in preterm infants , 2014, Clinical Neurophysiology.

[9]  Simon K. Warfield,et al.  Near-infrared spectroscopy versus magnetic resonance imaging to study brain perfusion in newborns with hypoxic–ischemic encephalopathy treated with hypothermia , 2014, NeuroImage.

[10]  R. Koehler,et al.  Cerebrovascular autoregulation after rewarming from hypothermia in a neonatal swine model of asphyxic brain injury. , 2013, Journal of applied physiology.

[11]  Dianne J. Russell,et al.  Gross Motor Function Measure (GMFM-66 and GMFM-88) User's Manual , 2013 .

[12]  R. Thiele,et al.  Use of the intrathoracic pressure regulator to lower intracranial pressure in patients with altered intracranial elastance: a pilot study. , 2013, Journal of neurosurgery.

[13]  Christoph U. Lehmann,et al.  Cerebrovascular autoregulation and neurologic injury in neonatal hypoxic-ischemic encephalopathy , 2013, Pediatric Research.

[14]  Frank van Bel,et al.  Comparing near-infrared spectroscopy devices and their sensors for monitoring regional cerebral oxygen saturation in the neonate , 2013, Pediatric Research.

[15]  C. Limperopoulos,et al.  Brain Perfusion in Encephalopathic Newborns after Therapeutic Hypothermia , 2013, American Journal of Neuroradiology.

[16]  J. Matthai,et al.  Correlation of EEG, CT, and MRI Brain with Neurological Outcome at 12 Months in Term Newborns with Hypoxic Ischemic Encephalopathy , 2013, Journal of clinical neonatology.

[17]  Jeroen Hendrikse,et al.  Evaluation of perinatal arterial ischemic stroke using noninvasive arterial spin labeling perfusion MRI , 2013, Pediatric Research.

[18]  Charles H. Brown,et al.  Continuous cerebrovascular reactivity monitoring and autoregulation monitoring identify similar lower limits of autoregulation in patients undergoing cardiopulmonary bypass , 2013, Neurological research.

[19]  G. H. Hahn Testing impact of perinatal inflammation on cerebral autoregulation in preterm neonates: evaluation of a noninvasive method. , 2013, Danish medical journal.

[20]  L. Thewissen,et al.  Tocolytic indomethacin: effects on neonatal haemodynamics and cerebral autoregulation in the preterm newborn , 2013, Archives of Disease in Childhood: Fetal and Neonatal Edition.

[21]  C. Werner,et al.  Transmission of arterial oxygen partial pressure oscillations to the cerebral microcirculation in a porcine model of acute lung injury caused by cyclic recruitment and derecruitment. , 2013, British journal of anaesthesia.

[22]  G. Faldella,et al.  Early predictors of short term neurodevelopmental outcome in asphyxiated cooled infants. A combined brain amplitude integrated electroencephalography and near infrared spectroscopy study , 2013, Brain and Development.

[23]  J. Jennings,et al.  Glial fibrillary acidic protein as a biomarker for neonatal hypoxic-ischemic encephalopathy treated with whole-body cooling. , 2011, American journal of obstetrics and gynecology.

[24]  J. Pickard,et al.  Noninvasive monitoring of cerebrovascular reactivity with near infrared spectroscopy in head-injured patients. , 2010, Journal of neurotrauma.

[25]  P. Smielewski,et al.  Impaired Autoregulation of Cerebral Blood Flow During Rewarming from Hypothermic Cardiopulmonary Bypass and Its Potential Association with Stroke , 2010, Anesthesia and analgesia.

[26]  Marek Czosnyka,et al.  Cerebrovascular reactivity measured by near-infrared spectroscopy. , 2009, Stroke.

[27]  R. Koehler,et al.  The Lower Limit of Cerebral Blood Flow Autoregulation Is Increased with Elevated Intracranial Pressure , 2009, Anesthesia and analgesia.

[28]  F. Northington,et al.  A systematic review of the role of intrapartum hypoxia-ischemia in the causation of neonatal encephalopathy. , 2008, American journal of obstetrics and gynecology.

[29]  R. Kraft,et al.  Hypercapnia-Induced Cerebral Hyperperfusion: An Underrecognized Clinical Entity , 2008, American Journal of Neuroradiology.

[30]  William Oh,et al.  Whole-body hypothermia for neonates with hypoxic-ischemic encephalopathy. , 2005, The New England journal of medicine.

[31]  J. Martin,et al.  Births: final data for 2003. , 2005, National vital statistics reports : from the Centers for Disease Control and Prevention, National Center for Health Statistics, National Vital Statistics System.

[32]  P. Accardo,et al.  Standardization of the Capute Scales: Methods and Results , 2004, Journal of child neurology.

[33]  Amanda Honeycutt,et al.  Economic costs associated with mental retardation, cerebral palsy, hearing loss, and vision impairment--United States, 2003. , 2004, MMWR. Morbidity and mortality weekly report.

[34]  K. Kurisu,et al.  Hyperemia prior to acute brain swelling during rewarming of patients who have been treated with moderate hypothermia for severe head injuries. , 2003, Journal of neurosurgery.

[35]  J. Volpe,et al.  Perinatal brain injury: from pathogenesis to neuroprotection. , 2001, Mental retardation and developmental disabilities research reviews.

[36]  G. Hagberg,et al.  Correlation between ICIDH handicap code and Gross Motor Function Classification System in children with cerebral palsy , 2000, Developmental medicine and child neurology.

[37]  S. Bradley-Johnson Mullen Scales of Early Learning , 1997 .

[38]  R. Palisano,et al.  Development and reliability of a system to classify gross motor function in children with cerebral palsy , 1997, Developmental medicine and child neurology.

[39]  J. W. Burns,et al.  Limited short-term prognostic utility of cerebral NIRS during neonatal therapeutic hypothermia , 2013, Neurology.

[40]  L. V. Marter Childhood Outcomes after Hypothermia for Neonatal Encephalopathy , 2012 .

[41]  W. Benitz Whole-Body Hypothermia for Neonates With Hypoxic–Ischemic Encephalopathy , 2006 .