End-systolic elastance
Ees (ESPVR slope) · Simplified: Ees ≈ ESP / ESV (V₀ = 0); better: single-beat method of Chen using EF, pre-ejection and total systolic times
Normal range & thresholds
Healthy adults ≈2 mmHg/mL; higher with age, hypertension and HFpEF (ventricular stiffening), lower in HFrEF [110,161].
Pathophysiology
The slope of the end-systolic pressure–volume relationship is the most load-independent index of contractility available — Suga and Sagawa’s time-varying elastance [111,123]. Echo approximates it either from one point with V₀ assumed zero (overestimates contractility in dilated hearts) or with Chen’s single-beat method, validated invasively [110].
Raised by
- Inotropes, exercise; concentric hypertrophy; HFpEF; ageing
Lowered by
- HFrEF, myocarditis, ischaemia, cardiotoxicity; β-blockade (acutely)
Technique & pitfalls
- Single-point Ees = ESP/ESV only if V₀ ≈ 0 — misleading in large ventricles.
- Chen single-beat: requires EF, systolic and diastolic cuff pressure and timing of pre-ejection and total systolic periods [110].
Pseudo-change & artefact
- The V₀ assumption; errors in ESV (foreshortening) and pressure.
Treatment thresholds
No guideline threshold. Used to explain mechanism (contractility vs load) and in coupling (card 50).
Next step
- Interpret with Ea (card 48) and myocardial work (card 55), which also corrects deformation for load.
Drugs
Raised by inotropes and digoxin; lowered by β-blockers and negative inotropes acutely; improves chronically with GDMT reverse remodelling.
Reversibility
Improves with recovery of contractile tissue; unchanged by scar.