ECMO Circuit Components and Management 2 — Questions and Answers
Question 1: What is the primary purpose of the raceway tubing in a centrifugal ECMO pump?
- To serve as the segment compressed by the pump head (Correct answer)
- To oxygenate blood passing through the circuit
- To house the heat exchanger coils
- To measure circuit flow via ultrasonic sensors
Correct answer: To serve as the segment compressed by the pump head
Raceway tubing is the specialized, crush-resistant segment that sits within a roller pump head and is repeatedly compressed to propel blood.
Question 2: Which ECMO circuit component is responsible for removing CO2 from the patient's blood?
- Centrifugal pump
- Oxygenator membrane (Correct answer)
- Bladder reservoir
- Servo-regulation sensor
Correct answer: Oxygenator membrane
The oxygenator membrane facilitates both oxygen delivery and CO2 removal via diffusion across hollow fiber membranes.
Question 3: When a 'chatter' or 'flutter' is observed in the venous drainage tubing, the most likely cause is:
- Excessive pump flow rate relative to venous return (Correct answer)
- Air embolism in the arterial limb
- Membrane lung thrombosis
- Heat exchanger malfunction
Correct answer: Excessive pump flow rate relative to venous return
Tubing chatter indicates inadequate venous return relative to the pump's demand, causing intermittent collapse and re-expansion of the drainage line.
Question 4: The sweep gas flow rate in ECMO primarily controls which parameter?
- Patient oxygenation
- CO2 removal (Correct answer)
- Circuit blood flow
- Patient temperature
Correct answer: CO2 removal
Sweep gas flow (the gas flowing through the oxygenator fiber lumen) is the primary determinant of CO2 clearance from the blood.
Question 5: What is the recommended strategy when air is detected in the ECMO circuit?
- Clamp the circuit, stop the pump, and remove air before restarting (Correct answer)
- Increase pump speed to push air through quickly
- Administer IV heparin bolus immediately
- Switch from VA to VV ECMO mode
Correct answer: Clamp the circuit, stop the pump, and remove air before restarting
Air entry requires immediate circuit clamping and pump stoppage to prevent air embolism, followed by controlled de-airing before circuit restart.
Question 6: The 'recirculation' phenomenon in VV-ECMO occurs when:
- Oxygenated blood returning to the patient is re-entrained into the drainage cannula (Correct answer)
- The pump spins in reverse direction
- CO2 accumulates in the oxygenator fiber bundle
- The heat exchanger overheats the blood
Correct answer: Oxygenated blood returning to the patient is re-entrained into the drainage cannula
Recirculation in VV-ECMO occurs when returned oxygenated blood is immediately suctioned back into the drainage cannula instead of circulating through the patient.
Question 7: Which cannula configuration is used in VV-ECMO with a single dual-lumen cannula?
- Bicaval dual-lumen cannula inserted via the internal jugular vein (Correct answer)
- Femoral artery to femoral vein
- Right atrium to ascending aorta
- Pulmonary artery to left atrium
Correct answer: Bicaval dual-lumen cannula inserted via the internal jugular vein
The Avalon or similar bicaval dual-lumen cannulas are placed via the right internal jugular vein, with drainage from both caval veins and return to the right atrium.
What is the primary purpose of the raceway tubing in a centrifugal ECMO pump?