Canonical Question
VQ – Venous admixture
Master answer
Venous admixture
“Theoretical volume of mixed venous blood added to pulmonary end-capillary blood to produce the observed CaO2 “
Causes of venous admixture
Shunt
- Physiological
- Thebesian vessels – drain venous blood from coronary circulation directly into cardiac chambers (including L ventricle)
- Bronchial circulation – Fracture of blood from bronchial circulation drains into pulmonary veins
- Pathological
Blood from pulmonary capillaries supplying unventilated alveoli (V/Q = 0)- Obstruction within bronchial tree
- Atelectasis
- Usually mitigated by hypoxic pulmonary vasoconstriction
V/Q mismatch
- Variation in ventilation and perfusion within the lung
- V/Q > 1 – Areas of lung with high relative ventilation to perfusion
- West Zone 1
- Lung apices
- In pathology
- Positive pressure ventilation
- Shock and hypoperfusion
- PE
- V/Q < 1 – Areas of lung with low relative ventilation to perfusion
- Lung bases
- West zone 4
- In pathology: Left heart failure, Pulmonary oedema
- V/Q > 1 – Areas of lung with high relative ventilation to perfusion
- Areas of high V/Q cannot compensate for areas of low V/Q due to the shape of the oxyHb dissociation curve and the sharp desaturation of deoxygenated blood. Also there may be decreased flow through the highly ventilated areas of lung
- V/Q mismatch in pathology
- Obstructive lung diseases: Asthma, COPD
- Restrictive lung diseases: ILD, ARDS
Sakurai 2016
Diagnosis of venous admixture
Estimated using A-a gradient using alveolar gas equation
\[ P_AO_2 \; = \; (f_iO_2 \; \times \; (P_{atm} \; – P_{H_2O})) \; – \; ({{P_aCO_2} \over {R}}) \]
R – Respiratory quotient, usually 0.8
Normal A-a gradient = 2.5 + (0.21 x Age)
Quantification of venous admixture
Shunt equation
\[ Q_t (C_aO_2) \; = \; Q_{ns} (C_cO_2) \; + \; Q_s (C_{mv}O_2) \]
Where
- Qt = Total cardiac output
- Qns = Flow through non-shunt areas
- Qs = Flow through shunt
- CaO2 = arterial content of O2
- CcO2 = pulmonary end-capillary O2 (presumed 100% SpO2)
- CmvO2 = mixed venous content of O2
- Blood sampled from R atrium
V/A quantification
- MIGET (Multiple inert gas elimination technique)
- IV injection of a volume of liquid with known quantities of 6 inert gases
- V/Q calculated from the elimination spectra of these gases
- PET
- Xe133 gas and Tc99 labelled RBC
- MRI
Sakurai 2016
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2009B Q06 | Define venous admixture and list its causes. (50% of marks) How is it diagnosed and how is it quantified? (50% of marks) | historical_member | — |
| 2024A Q02 | (a) Describe venous admixture and the sources contributing to it in an adult (60% of marks). (b) Explain the effects of supplemental oxygen on arterial hypoxaemia (40% of marks). | historical_member | — |