Canonical Question

CO Measuremrent

V5 D6.iv Historical V4 G6.iii 3 appearances

Master answer

Cardiac Output

Cardiac output = Volume of blood ejected by the heart per unit time (minute)

HR determined by autonomic input

SV = Amount of blood ejected by the heart per contraction

Governed by:

Measurement

Cardiac output measurement can be performed:

Thermodilution

Indicator Dilution (Stewart-Hamilton)

Introduction

Invasive

Thermodilution remains the gold standard of cardiac output measurement.

Invasive

Equipment

Pulmonary Artery Catheter

  • A proximal port at the RA/SVC
  • A temperature probe at the tip: Typically a silicon oxide thermistor.
  • A balloon at the tip: To float it into position.
  • A distal (PA) port is required for measuring PAP and the PCWP, but is not required for CO calculation

Can also be done using other devices like PiCCO

  • dyes: indocyanine green, isobestic or radioactive isotope.
  • Catheter for injection
  • Arterial Sampling catheter
  • Measurement device

Method / Theoretical Basis

  • Catheter passed into right atrium
    • Known quantity of fluid of known temperature injected into right atrium
  • Second catheter in pulmonary artery
    • Measured change in temperature
    • Change in temperature over time graphed
    • Return of temperature to baseline extrapolated to zero to account for
      recirculation
    • Average change in temperature for duration of curve calculated
    • CO = temperature of indicator / (average change in temp x duration of curve)

Method:

  • rapidly inject 10mL of dye into venous circullation in RA.
  • indicator mixes quickly with cardiac contents.
  • during next few beats, blood-indicator mixture is measured by continual sampling from proximal artery in arm for one complete circulation (30 seconds).
  • mean concentration of mixture for one circulation determined.

Q = amount of indicator injected / indicator concentration over time.

Assumptions:

  • retention of indicator
  • complete mixing
  • constant flow rate

Advantages / Disadvantages / Errors

Advantages:

  • Simple
  • No toxicity
  • Repeated measurements possible

Disadvantages / Errors:

  • Natural variability (reduced by using mean of 3-5 measurements)
  • Issues with incorrect volume and temperature of injectate
  • Improper positioning of PAC and complications associated with insertion and use
  • Tricuspid regurgitation
    Results in retrograde ejection of injectate back past the valve.
  • Arrhythmia

Advantages:

  • rapid Q determination

Disadvantages:

  • need to continuously withdraw arterial blood to plot the concentration curve.
  • dye can build up.
  • intracardiac shunt will effect recirculation.

Sakurai / JC 2019

Exam appearances

ExamExact wordingRelationshipSuccess
2011A Q12 Describe the principles, and limitations, of the measurement of cardiac output using an indicator dilution technique historical_member
2017B Q10 Compare and contrast two methods of measuring cardiac output historical_member
2014A Q19 Define cardiac output. (10% of marks) Outline the factors that affect cardiac output. (60% of marks) Briefly describe the thermo dilution method of measuring cardiac output. (30% of marks) historical_member