LV volumes and ejection fraction
LVEDV, LVESV, LVEF · Biplane method of discs (modified Simpson) from non-foreshortened apical 4- and 2-chamber views
Normal range & thresholds
| Men | Women | |
|---|---|---|
| LVEDV | 62–150 mL | 46–106 mL |
| LVEDV index | 34–74 mL/m² | 29–61 mL/m² |
| LVESV | 21–61 mL | 14–42 mL |
| LVESV index | 11–31 mL/m² | 8–24 mL/m² |
| LVEF | 52–72% | 54–74% |
Pathophysiology
Volume is the integral of every mismatch between filling and ejection. End-diastolic volume reflects preload and chronic volume load; end-systolic volume reflects the interaction of contractility and afterload; ejection fraction is merely their ratio — which is why it is preserved in the volume-overloaded ventricle that is already failing, and depressed in the pressure-overloaded ventricle that still has normal myocyte function. Eccentric remodelling begins as compensation (Frank-Starling, sarcomere addition in series) and becomes maladaptive when neurohormonal activation, fibrosis and sphericity take over.[37,71]
Raised by
- LVEDV ↑: chronic AR, chronic primary MR, shunts, DCM, ischaemic remodelling, endurance athlete, bradycardia, high-output states
- LVESV ↑: any cause of reduced contractility, plus pressure overload — the earliest volume signal of true systolic failure
- LVEF apparently ↑: severe MR, hyperdynamic sepsis/anaemia/thyrotoxicosis, HCM, small hypercontractile ventricle, dobutamine
Lowered by
- LVEDV ↓: hypovolaemia, tamponade, constriction, restrictive/infiltrative disease, severe MS, HCM, severe RV pressure overload
- LVEF ↓: ischaemic and non-ischaemic cardiomyopathy, myocarditis, cardiotoxic chemotherapy, tachycardia-induced, stress (takotsubo), sepsis, thyroid disease, alcohol, sustained arrhythmia, afterload mismatch in severe hypertension or aortic stenosis
- Dyssynchrony (LBBB, RV pacing) — a mechanical, partly reversible cause
Technique & pitfalls
- Use a non-foreshortened apex: the commonest single error in all of echocardiography, and it under-measures volumes while over-measuring ejection fraction.
- Trace the blood–tissue interface, excluding papillary muscles and trabeculae, at end-diastole (largest) and end-systole (smallest).
- Use ultrasound-enhancing agent whenever two or more contiguous segments are not seen — class I practice, not a luxury.[17,27]
- Report the method (2D biplane / contrast / 3D) in the report line; a change of method looks exactly like a change of patient.
- Teichholz and fractional shortening are invalid whenever wall motion is regional; they extrapolate a whole ventricle from one basal chord.[1,42]
- In AF, average at least 5 consecutive cycles, or use beats with comparable preceding RR intervals.
Pseudo-change & artefact
- Foreshortening (→ falsely high LVEF), endocardial dropout, and inclusion of trabeculae.
- Contrast studies give volumes 10–20% larger — a ‘deterioration’ that is pure method.
- Load: acute afterload reduction raises LVEF; hypovolaemia lowers volumes and can raise LVEF.
- Heart rate and rhythm, post-extrasystolic potentiation, and the beat chosen in AF.
- Inter-observer variability of LVEF by 2D echo is ±5–8 percentage points — larger than several guideline thresholds, which is the main argument for adding strain or CMR near a decision point.
- Eyeballed ‘visual EF’ reported as a number without tracing.
Treatment thresholds
- LVEF ≤40% → full guideline-directed medical therapy for HFrEF (class I): ARNI/ACEi, beta-blocker, MRA, SGLT2 inhibitor.[11,12]
- LVEF ≤35% after ≥3 months of optimal therapy, NYHA II–III, expected survival >1 year → primary-prevention ICD (class I in ischaemic, class I–IIa in non-ischaemic).[11,38]
- LVEF ≤35% + sinus rhythm + LBBB ≥150 ms → CRT (class I).[39]
- Aortic stenosis: severe AS with LVEF <50% → AVR (class I) regardless of symptoms — and even an ejection fraction in the 50–60% range carries excess mortality in severe AS;[85] low-flow low-gradient AS is defined by stroke volume index <35 mL/m².[5,6,7]
- Aortic regurgitation: LVEF ≤55% (2025 ESC/EACTS) or ≤50–55% (ACC/AHA), or LVESVi >45 mL/m², → surgery in asymptomatic severe AR.[6,7]
- Primary MR: LVEF ≤60% → surgery (class I) — the deliberately ‘high’ threshold, because a normal-looking EF is already abnormal when the ventricle empties into the left atrium.[6,7]
- Secondary MR: COAPT-like anatomy with LVEF 20–50% and persistent symptoms on GDMT → TEER (class I, 2025 ESC/EACTS).[6,64]
- Cardio-oncology: LVEF fall ≥10 points to <50% = cancer-therapy-related cardiac dysfunction → cardioprotection and multidisciplinary review.[15]
Next step
- Next: repeat with an ultrasound-enhancing agent if any doubt; add GLS in the same sitting.
- Then: CMR for the reference-standard volumes, scar burden and aetiology — particularly when the decision is an ICD or when echo and clinical picture disagree.
- Then: ischaemia/viability assessment (stress echo, perfusion CMR, coronary angiography) in any newly reduced LVEF; then rhythm review (rate control, PVC burden >10%, dyssynchrony).
- Then: re-image at 3 months of optimal therapy before committing to device therapy — a substantial minority recover above the threshold.
Drugs
- Improve LVEF / reduce volumes: ARNI (PROVE-HF: LVEF +9.4 points, LVEDVi −7.9 mL/m² at 12 months)[68]; SGLT2 inhibitors (EMPA-TROPISM: LVEF +6.0 points, LVESV −26.6 mL at 6 months)[69]; beta-blockers; MRAs; CRT in dyssynchrony.
- Reduce LVEF: anthracyclines, trastuzumab, immune-checkpoint inhibitors, VEGF and proteasome inhibitors, high-dose alcohol, cocaine/amphetamines, some tyrosine-kinase inhibitors, chronic non-dihydropyridine calcium blockers in decompensated HFrEF.[15]
- Transiently raise LVEF without improving outcome: inotropes — do not mistake a dobutamine ejection fraction for recovery.
Reversibility
HFrEF: ≈40% of patients on contemporary quadruple therapy achieve a ≥10-point LVEF rise; the largest gains occur in non-ischaemic, recent-onset, LBBB-free disease, mostly within 6–12 months.[68,69,71]
Tachycardia-induced and PVC-induced cardiomyopathy: 70–90% normalise within 3–6 months of rhythm control or ablation.
Takotsubo: >95% normalise within 1–4 weeks. Peripartum: ≈50–70% recover within 6–12 months. Myocarditis: majority recover; fulminant paradoxically does best.
Alcoholic: substantial recovery with abstinence. Anthracycline: ≈60% partial recovery if detected early and treated; late-detected dysfunction recovers in <20%.[15,29]
Ischaemic with transmural scar: essentially irreversible. Recovery, when it happens, is remission: 44% relapse within 6 months of therapy withdrawal.[70]
Tachycardia-induced and PVC-induced cardiomyopathy: 70–90% normalise within 3–6 months of rhythm control or ablation.
Takotsubo: >95% normalise within 1–4 weeks. Peripartum: ≈50–70% recover within 6–12 months. Myocarditis: majority recover; fulminant paradoxically does best.
Alcoholic: substantial recovery with abstinence. Anthracycline: ≈60% partial recovery if detected early and treated; late-detected dysfunction recovers in <20%.[15,29]
Ischaemic with transmural scar: essentially irreversible. Recovery, when it happens, is remission: 44% relapse within 6 months of therapy withdrawal.[70]