Current Environment: Production

Jordan Rettig | Medical Services

Programs & Services

Languages

  • English

Jordan Rettig | Education

Medical School

University of Connecticut School of Medicine

2006, Storrs, CT

Residency

Pediatrics

Children's Hospital of Philadelphia

2009, Philadelphia, PA

Fellowship

Pediatric Critical Care Medicine

Boston Children's Hospital

2012, Boston, MA

Fellowship

Pediatric Cardiovascular Intensive Care

Boston Children's Hospital

2013, Boston, MA

Jordan Rettig | Certifications

  • American Board of Pediatrics (Critical Care Medicine)
  • American Board of Pediatrics (General)

Jordan Rettig | Publications

  1. Critical Care Transport of Patients With COVID-19. J Intensive Care Med. 2021 Jun; 36(6):704-710. View Critical Care Transport of Patients With COVID-19. Abstract

  2. ATS Core Curriculum 2020. Pediatric Pulmonary Medicine. ATS Sch. 2020 Dec 30; 1(4):456-475. View ATS Core Curriculum 2020. Pediatric Pulmonary Medicine. Abstract

  3. The Therapeutic Window for Oxygen. Respir Care. 2020 03; 65(3):400-401. View The Therapeutic Window for Oxygen. Abstract

  4. Distribution of Ventilation Measured by Electrical Impedance Tomography in Critically Ill Children. Respir Care. 2020 May; 65(5):590-595. View Distribution of Ventilation Measured by Electrical Impedance Tomography in Critically Ill Children. Abstract

  5. American Thoracic Society 2019 Pediatric Core Curriculum. Pediatr Pulmonol. 2019 12; 54(12):1880-1894. View American Thoracic Society 2019 Pediatric Core Curriculum. Abstract

  6. Weighing in on Ventilator Strategies. Pediatr Crit Care Med. 2018 Dec; 19(12):1179-1180. View Weighing in on Ventilator Strategies. Abstract

  7. Dexmedetomidine in the PICU: Can We Get More for Less? Pediatr Crit Care Med. 2017 09; 18(9):893-894. View Dexmedetomidine in the PICU: Can We Get More for Less? Abstract

  8. ATS Core Curriculum 2017: Part II. Pediatric Pulmonary Medicine. Ann Am Thorac Soc. 2017 08; 14(Suppl_2):S165-S181. View ATS Core Curriculum 2017: Part II. Pediatric Pulmonary Medicine. Abstract

  9. Daily Goals Formulation and Enhanced Visualization of Mechanical Ventilation Variance Improves Mechanical Ventilation Score. Respir Care. 2017 Mar; 62(3):268-278. View Daily Goals Formulation and Enhanced Visualization of Mechanical Ventilation Variance Improves Mechanical Ventilation Score. Abstract

  10. 949: DEVELOPMENT OF HEART, RESPIRATORY RATE, AND OXYGEN SATURATION PERCENTILE CURVES IN CHILDREN. Crit Care Med. 2016 Dec; 44(12 Suppl 1):313. View 949: DEVELOPMENT OF HEART, RESPIRATORY RATE, AND OXYGEN SATURATION PERCENTILE CURVES IN CHILDREN. Abstract

  11. 955: A MACHINE-LEARNING ALGORITHM FOR OXYGENATION RESPONSE PREDICTION IN MECHANICALLY VENTILATED CHILDREN. Crit Care Med. 2016 Dec; 44(12 Suppl 1):315. View 955: A MACHINE-LEARNING ALGORITHM FOR OXYGENATION RESPONSE PREDICTION IN MECHANICALLY VENTILATED CHILDREN. Abstract

  12. Pediatric Chronic Home Invasive Ventilation. Ann Am Thorac Soc. 2016 07; 13(7):1170-2. View Pediatric Chronic Home Invasive Ventilation. Abstract

  13. Categorization in Mechanically Ventilated Pediatric Subjects: A Proposed Method to Improve Quality. Respir Care. 2016 Sep; 61(9):1168-78. View Categorization in Mechanically Ventilated Pediatric Subjects: A Proposed Method to Improve Quality. Abstract

  14. ATS Core Curriculum 2016: Part III. Pediatric Pulmonary Medicine. Ann Am Thorac Soc. 2016 06; 13(6):955-66. View ATS Core Curriculum 2016: Part III. Pediatric Pulmonary Medicine. Abstract

  15. Mechanical Ventilation during Acute Brain-Injury in Children. Paediatr Respir Rev. 2016 Sep; 20:17-23. View Mechanical Ventilation during Acute Brain-Injury in Children. Abstract

  16. Waiting to Exhale: Optimizing Noninvasive Synchrony in COPD? Respir Care. 2016 Jan; 61(1):122-4. View Waiting to Exhale: Optimizing Noninvasive Synchrony in COPD? Abstract

  17. High-Frequency Oscillatory Ventilation in Pediatric Acute Lung Injury: A Multicenter International Experience. Crit Care Med. 2015 Dec; 43(12):2660-7. View High-Frequency Oscillatory Ventilation in Pediatric Acute Lung Injury: A Multicenter International Experience. Abstract

  18. Implementation of an inhaled nitric oxide protocol: a paradox or the perfect pair? Respir Care. 2015 May; 60(5):760-1. View Implementation of an inhaled nitric oxide protocol: a paradox or the perfect pair? Abstract

  19. Mechanical ventilation guided by electrical impedance tomography in experimental acute lung injury. Crit Care Med. 2013 May; 41(5):1296-304. View Mechanical ventilation guided by electrical impedance tomography in experimental acute lung injury. Abstract

  20. Interaction of dependent and non-dependent regions of the acutely injured lung during a stepwise recruitment manoeuvre. Physiol Meas. 2013 Feb; 34(2):163-77. View Interaction of dependent and non-dependent regions of the acutely injured lung during a stepwise recruitment manoeuvre. Abstract

  21. Comparison of 2 lung recruitment strategies in children with acute lung injury. Respir Care. 2013 Aug; 58(8):1280-90. View Comparison of 2 lung recruitment strategies in children with acute lung injury. Abstract

  22. High-frequency oscillatory ventilation: learning which way to turn the dials. Pediatr Crit Care Med. 2012 Mar; 13(2):242-4. View High-frequency oscillatory ventilation: learning which way to turn the dials. Abstract

  23. Inhaled nitric oxide only leads to a transient improvement of oxygenation in patients with acute hypoxemic respiratory failure. Pediatr Pulmonol. 2011 Aug; 46(8):733-5. View Inhaled nitric oxide only leads to a transient improvement of oxygenation in patients with acute hypoxemic respiratory failure. Abstract

  24. Predictors of loss to follow-up in young patients with minor trauma after screening and written intervention for alcohol in an urban emergency department. J Stud Alcohol Drugs. 2007 Jan; 68(1):133-40. View Predictors of loss to follow-up in young patients with minor trauma after screening and written intervention for alcohol in an urban emergency department. Abstract

  25. Gender differences in the performance of a computerized version of the alcohol use disorders identification test in subcritically injured patients who are admitted to the emergency department. Alcohol Clin Exp Res. 2004 Nov; 28(11):1693-701. View Gender differences in the performance of a computerized version of the alcohol use disorders identification test in subcritically injured patients who are admitted to the emergency department. Abstract

  26. Decreased proopiomelanocortin mRNA in lymphocytes of chronic alcoholics after intravenous human corticotropin releasing factor injection. Alcohol Clin Exp Res. 2003 Nov; 27(11):1693-700. View Decreased proopiomelanocortin mRNA in lymphocytes of chronic alcoholics after intravenous human corticotropin releasing factor injection. Abstract

  27. Alcohol withdrawal severity is decreased by symptom-orientated adjusted bolus therapy in the ICU. Intensive Care Med. 2003 Dec; 29(12):2230-2238. View Alcohol withdrawal severity is decreased by symptom-orientated adjusted bolus therapy in the ICU. Abstract

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