Canonical Question

VQ – Matching

V5 C6.i Historical V4 F6.iii 3 appearances

Master answer

Normal V/Q variation

  • Both V and Q ↓ as you move from base to apex.
    • ↓ total number of alveoli → ↓ diffusive area → ↓ V
    • ↑ compression of intra-alveolar vessels → ↑ west zone 1 → ↓ Q
    • V ↓’s slower than Q
  • The intersection of V/Q is at rib 3, here V/Q = 1
  • V/Q = 3 at the apex
  • V/Q = 0.67 at bases

Normal Variation in V/Q causes:

\[ 1. \; {{\dot{V}_A} \over {\dot{Q}}} \; = \; 0 \]
  • Shunt
  • PACO2 and PAO2 = mixed venous blood
    • PACO= 46mmHg
    • PAO2 = 40mmHg
\[ 2. \; {{\dot{V}_A} \over {\dot{Q}}} \; = \; 1 \]
  • Matched ventilation and perfusion
  • PACO2 and PAO2 = normal blood gas for healthy patient
    • PACO2 = 40mmHg
    • PAO2 = 100mmHg
\[ 3. \; {{\dot{V}_A} \over {\dot{Q}}} \; = \; ∞ \]
  • Dead space
  • Alveolar pressures equal that of inspired air
    • PACO2 = 0mmHg 
    • PAO2 = 150mmHg
https://physoc.onlinelibrary.wiley.com/doi/pdf/10.14814/phy2.13903

For PaO₂:

  • Increased V/Q inequality causes:
    • Mild decrease in PaO2
    • At Apex
      • decrease in dissolved O2
      • Minimal decrease in Hb saturation due to flat part of OHDC
      • Thus overall decrease in CaO2
    • Base
      • PAO2 = PvO2 = 40
  • Addition of a small quantity of poorly oxygenated shunted blood flow (PO2 < PcO2) added to a large volume well-oxygenated PECB →  small fall in CaO2 BUT a LARGER fall in PaO2
  • Because carrying capacity of blood to apex is decreased there is a decrease in PaO2

For PaCO₂:

Remembering that the relationship for the Alveolar gasses:

  • Increased V/Q inequality causes:
    • Mild increase in PaCO2  which is rapidly compensated for due to Chemoreceptor reflexes
    • Apex to base
      • ↓PACO2 towards the apices of the lungs
      • ↓gas transfer → ↑PaCO2 
      • Sensed by chemoreceptors (sensitive to ±3mmHg
      • ↑RR and Tv as per the CO2 dissociation curve
  • Normal or slightly lower (after compensation) CO2

Gladwin 2016

Exam appearances

ExamExact wordingRelationshipSuccess
2008A Q06 Compare the effect on arterial blood carbon dioxide and oxygen levels of ventilation / perfusion inequalities. historical_member
2014B Q05 Describe the effects of V/Q inequality on the partial pressure of oxygen (PaO2) and carbon dioxide (PaCO2) in arterial blood. historical_member
2017B Q06 Describe the effects of Ventilation/Perfusion (V/Q) inequality on the partial pressure of oxygen (PaO2) in arterial blood historical_member