Related Experiment Video
Updated: Feb 11, 2026

Veno-Venous Extracorporeal Membrane Oxygenation in a Mouse
Published on: October 24, 2018
Pediatric Veno-Veno Extracorporeal Membrane Oxygenation Rescue From Carbon Monoxide Poisoning
David A Baran1, Kelly Stelling1, Derrick McQueen2
1From the Sentara Heart Hospital, Norfolk, VA.
Insights
Veno-veno extracorporeal membrane oxygenation (ECMO) was successfully used to treat a child with severe carbon monoxide poisoning. This novel approach offers a life-saving alternative when hyperbaric oxygen therapy is unavailable.
Area of Science:
- Pediatric Emergency Medicine
- Toxicology
- Cardiopulmonary Support
Background:
- Carbon monoxide poisoning is a significant cause of pediatric emergency visits, often presenting with altered consciousness and potentially masked by a healthy appearance.
- Diagnosis and treatment can be challenging, necessitating a broad differential diagnosis in affected children.
- Traditional treatments may not always be readily available or sufficient in severe cases.
Observation:
- A 10-year-old patient with severe carbon monoxide poisoning (carboxyhemoglobin 18%) experienced cardiac arrest despite initial treatment.
- The patient was deemed too unstable for transport to a hyperbaric facility, prompting the use of veno-veno ECMO.
- Veno-veno ECMO was initiated via a single internal jugular dual-lumen catheter.
Findings:
- Initiation of veno-veno ECMO led to a rapid decrease in carboxyhemoglobin levels.
- ECMO therapy was successfully weaned the following day.
- The patient achieved a full recovery without long-term sequelae.
Implications:
- Veno-veno ECMO is presented as a viable emergent treatment option for severe carbon monoxide poisoning when hyperbaric oxygen therapy is not accessible.
- This case highlights ECMO as a critical, albeit unconventional, intervention in managing life-threatening carbon monoxide intoxication.
- The successful application of ECMO broadens the therapeutic armamentarium for emergency physicians facing complex poisoning cases.
Background:
Carbon monoxide poisoning affects approximately 5000 children per year and can be challenging to diagnose and treat (Pediatr Emerg Med Pract. 2016;13:1-24). It is in the differential diagnosis of a patient presented with altered consciousness. Patients may look quite "pink" and well perfused, but are often in serious distress. We present the first case in the literature of carbon monoxide poisoning treated with the use of veno-veno extracorporeal membrane oxygenation (ECMO).
Case:
We report the case of a 10-year-old patient who had carbon monoxide poisoning (carboxyhemoglobin of 18%). She was treated with hydroxocobalamin at 70 mg/kg and was being prepared to transfer to a facility that offered hyperbaric therapy when she suffered a cardiac arrest requiring cardiopulmonary resuscitation. After 11 minutes of resuscitation, she had return of spontaneous circulation and an echocardiogram showed reasonable cardiac function. She was judged too unstable for ambulance transport and the ECMO team was called. Veno-veno ECMO was placed via a single right internal jugular dual-lumen catheter with fluoroscopy in the cardiac catheterization laboratory. There was a rapid improvement in carboxyhemoglobin level, and the ECMO therapy was weaned the next day. The patient eventually made a full recovery.
Conclusions:
This is the first time that veno-veno ECMO has been reported for the emergent treatment of carbon monoxide intoxication. If emergency physicians are treating such a patient and cannot administer hyperbaric oxygen therapy, ECMO represents a valuable alternative that is not commonly thought of in this situation before.
More Related Videos
Related Concept Videos
Enhanced Elimination of Poison
Antidotes serve a crucial role in counteracting the effects of poison by inhibiting enzymes responsible for producing harmful drug metabolites. In some cases, these toxic metabolites can be neutralized by endogenous cosubstrates, which are maintained at specific concentrations to prevent interaction with cellular macromolecules and subsequent cell death.
Renal excretion is the...
Prevention of Further Absorption of Poison
Anticholinesterase Agents: Poisoning and Treatment
Irreversible agents form a strong bond with the cholinesterase enzyme, making it inactive. The breakdown of the phosphorylated enzyme is...
The Carbon Cycle
Carbon Skeletons
Extracorporeal Removal of Drugs: Hemoperfusion and Hemofiltration

