Canonical Question
Applied Resp – Gases
Master answer
Hypoxaemia:
= Hypoxic Hypoxia= decreased PaO2 due to problems at the level of the lungs
Causes:
- Normal A-a Gradient
- Alveolar hypoventilation – neuromuscular disease
- Low PiO2 – FiO2 < 0.21, Barometric pressure < 760mmHg
- Raised A-a Gradient
- Diffusion defect – COPD, Pulmonary fibrosis, exercise
- V/Q Mismatch – Aging
- Right-to-left shunt – PDA, PFOs, ASDs or VSDs
- Increased O2 extraction – Sepsis
Physiological Outcome:
- ↑ local vasodilation → ↓ SVR and ↓ BP
- ↓ BP → Baroreceptors → SNS activation → ↑ HR and ↑ C.O.
- PaO2 < 50-60 mmHg
- → peripheral chemoreceptors stimulation
- → ↑ventilation
- Severe hypoxaemia
- ↓ HR and BP → shock
- ↑ CBF (regardless of PaCO2)
- Lactic Acidosis:
- Embden-meirhoff continues (glycolysis is anaerobic)
- Mitochondrial hypoxaemia → ↓d ETC (electron transport chain) activity → ↑ cytoplasmic Acetyl CoA → ↓ conversion of Pyruvate to Acetyl CoA → ↑ [Pyruvate] → ↑ shunting of pyruvate to lactate → ↓ SID → Acidosis (↑ [H])
Chemoreceptor Reflex
- Mechanism:
- ↓’d perfusion → ↑[H]/↓PaO2 → CR stimulation
- Afferent signal → Sinus nerve (of herring) / Vagus Nerve → Chemosensitive area of medulla
- Vasomotor area → ↑ peripheral vasoconstriction
- Respiratory centre → ↑rate and depth of respiration → ↑ venous return
- ↓’d perfusion → ↑[H]/↓PaO2 → CR stimulation
- Result
- Hypoxia/hypercaponea → ↑ peripheral vasosmotor tone, ↑rate and depth of respiration
- ↓ PaO2
- Gradual ↑ MV PaO2 < 500mmHg,
- Rapid ↑MV PaO2 < 50 mmHg
- ↓ PaO2
- Hypoxia/hypercaponea → ↑ peripheral vasosmotor tone, ↑rate and depth of respiration
Acid-Base changes:
- ↑[H] → ↑rate and depth of respiration → Respiratory alkalosis
- ↑ HCO3 if chronic (> 3 days)
- ↑[lactate] → ↑ Anion gap
CICMWrecks 2016
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2007B Q11 | Describe the acid-base changes that occur in acute hypoxaemia. | historical_member | — |