Cleveland, Ohio · United States
interventional cardiologist
Samir Kapadia →
Kapadia is a Cleveland Clinic interventional cardiologist specialising in TAVR and other catheter valve therapies.
Sources: Samir Kapadia, MD
TAVI or valve surgery · Decision guide
Compare the treatment that fits the valve and the person, including what might be needed years later.
TAVI and surgical replacement can both treat severe aortic stenosis. TAVI introduces a tissue valve by catheter; surgery removes the diseased valve and can also treat associated coronary or aortic disease.
Typical NHS hospital guidance for TAVI and surgical replacement respectively; individual recovery varies.
Sources: NHS: valve recovery
PARTNER 3 found no significant difference in its primary composite outcomes between transfemoral TAVR and surgery in low-risk patients.
Sources: Transcatheter or Surgical Aortic-Valve Replacement in Low-Risk Patients at 7 Years
TAVI more often involves vascular complications, paravalvular leak and new pacemakers; surgery more often involves severe bleeding, kidney injury and new AF in guideline evidence.
Sources: 2025 ESC/EACTS Guidelines for the management of valvular heart disease
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Sources: NHS: valve types · NHS: valve recovery · ESC/EACTS valve guidance (2025)
Sources: Transcatheter or Surgical Aortic-Valve Replacement in Low-Risk Patients at 7 Years · 2025 ESC/EACTS Guidelines for the management of valvular heart disease
This comparison concerns aortic stenosis: narrowing of the aortic valve. A recommendation must first establish the severity of the disease and the reason to intervene now, considering symptoms, heart function and relevant test findings.
Aortic regurgitation, active valve infection and failure of a previously implanted valve need their own assessment. Evidence from trials of native aortic stenosis should not be applied to those problems without qualification.
Sources: 2020 ACC/AHA Heart Valve Disease Guideline: Key Perspectives, Part 1 · 2025 ESC/EACTS Guidelines for the management of valvular heart disease: introduction
| Feature | TAVI / TAVR | Surgical replacement |
|---|---|---|
| Access | Catheter, usually via a suitable groin artery | Sternotomy or selected smaller chest incision |
| Old valve | New valve expands within it | Diseased valve is removed |
| Replacement | Biological tissue valve | Tissue or mechanical valve |
| Heart support | Routine TAVI does not require stopping the heart | Heart-lung support is used |
| Associated disease | Other conditions may need a separate procedure | Bypass, aortic repair or another valve procedure may be combined |
Sources: NHS: valve types · Transcatheter aortic valve replacement (TAVR) · Update on TAVI Indications From 2020 ACC/AHA Valvular Guidelines
The 2025 ESC/EACTS guideline recommends TAVI from age 70 for a three-leaflet (tricuspid) aortic valve when anatomy is suitable and access through the groin artery is feasible, and surgery below 70 when surgical risk is low. Other candidates need an individualized Heart Team choice. Here “tricuspid” describes the aortic valve’s three leaflets, not the separate tricuspid valve.
Guidelines do not use identical age bands. The 2020 ACC/AHA recommendations favour surgery below 65 or with life expectancy over 20 years; favour transfemoral TAVI above 80 or with life expectancy below 10 years when feasible; and use shared decision-making from 65 to 80 in symptomatic patients suitable for either. These dated frameworks are not automatic eligibility rules.
Sources: 2025 ESC/EACTS Guidelines for the management of valvular heart disease · 2025 ESC/EACTS Guidelines for the management of valvular heart disease: official release · 2020 ACC/AHA Heart Valve Disease Guideline: Key Perspectives, Part 1
Echocardiography, CT and coronary assessment establish these anatomical findings. Age and a surgical-risk score add context, but neither defines the entire treatment choice.
| Finding that changes the choice | Why it matters |
|---|---|
| Bicuspid aortic valve | Surgery remains the main option, especially in younger patients or with aortic disease. Selected patients at increased surgical risk may be considered for TAVI if anatomy is suitable. |
| Difficult artery access or valve/root anatomy | Surgery is generally preferred when the transfemoral route is unsuitable. Other TAVI access routes may be considered when surgery is unsuitable. |
| Aorta disease, complex coronary disease or another valve problem | Surgery may address more than one problem in a single operation. |
| Major frailty or serious illness beyond the valve | The team must assess likely survival, symptom relief and quality-of-life benefit from either treatment. |
| Small valve opening and a long expected lifespan | The size and design chosen now can affect later valve treatment. |
Sources: 2025 ESC/EACTS Guidelines for the management of valvular heart disease · 2020 ACC/AHA Heart Valve Disease Guideline: Key Perspectives, Part 1 · Update on TAVI Indications From 2020 ACC/AHA Valvular Guidelines
Both approaches have risks, including stroke, bleeding, infection and death. Across the evidence summarized in the 2025 guideline, vascular complications, leakage around the valve and new pacemakers occur more often after TAVI; severe bleeding, acute kidney injury and new atrial fibrillation occur more often after surgery. These patterns do not predict an individual outcome.
Request procedure-specific estimates for someone with similar anatomy and health. A low surgical risk score does not answer every question about TAVI anatomy or future procedures, and a shorter initial stay is not the same outcome as long-term survival.
Sources: Transcatheter aortic valve replacement (TAVR) · 2025 ESC/EACTS Guidelines for the management of valvular heart disease · Heart Surgery: Risks · STS risk calculators · STS rating methodology
PARTNER 3 randomized 1,000 patients with severe, symptomatic aortic stenosis and low surgical risk to transfemoral TAVR or surgery. At seven years, the estimated combined incidence of death, stroke or relevant rehospitalization was 34.6% after TAVR and 37.2% after surgery; the difference was −2.6 percentage points (95% confidence interval −9.0 to 3.7). The primary comparisons did not show a statistically significant difference.
Bioprosthetic valve failure was reported in 6.9% and 7.5%, respectively. This is useful follow-up for the studied population and valve approach, not proof of equal lifetime durability in younger patients, all anatomies or every device. These combined seven-year events are not procedural death rates. The study was funded by Edwards Lifesciences; the report appeared online in 2025 and in the 2026 journal issue.
Sources: Transcatheter or Surgical Aortic-Valve Replacement in Low-Risk Patients at 7 Years
A tissue valve can deteriorate. Another catheter valve inside it may be possible, but it is not a guaranteed future solution. Planning needs to consider space for another valve, the risk of blocking a coronary artery and whether those arteries will remain accessible for future treatment.
A mechanical valve offers a different durability trade-off and requires lifelong anticoagulation. Its suitability depends on the person’s circumstances and preferences; TAVI does not offer a mechanical-valve option.
Sources: 2025 ESC/EACTS Guidelines for the management of valvular heart disease · NHS: valve types · Transcatheter aortic valve replacement (TAVR)
NHS guidance describes roughly two to three days in hospital after TAVI versus about a week after surgical valve replacement, with two to three months for full recovery after chest surgery. Actual discharge and recovery vary; these are general patient-information timelines, not a promise for a particular centre.
Both treatments require valve surveillance and medication review after discharge. Early walking, rehabilitation and return travel follow different milestones; a shorter hospital stay does not remove the need for continuing cardiac care.
Sources: NHS: valve recovery · Transcatheter aortic valve replacement (TAVR)
Explore each specialist’s clinical focus, current programme and the studies relevant to this treatment. The listed roles include cardiac surgeons and, where appropriate, interventional cardiologists.
Cleveland, Ohio · United States
interventional cardiologist
Kapadia is a Cleveland Clinic interventional cardiologist specialising in TAVR and other catheter valve therapies.
Sources: Samir Kapadia, MD
Paris · France
cardiac surgeon
Lansac’s research combines aortic-root remodelling with external support of the valve annulus to retain the natural aortic valve.
Sources: External aortic annuloplasty with a dedicated expansible ring improves outcomes in remodeling root repair compared with homemade Dacron ring. · Dr Emmanuel Lansac
Durham, North Carolina · United States
cardiac surgeon
Hughes lists aortic valve repair and valve-sparing root replacement among his Duke clinical areas.
Sources: G. Chad Hughes, MD · Mid-term outcomes of aortic valve repair using an anatomically shaped internal annuloplasty ring.
London · United Kingdom
cardiac surgeon
Rosendahl’s stated practice includes repair of the aortic, mitral and tricuspid valves and valve-sparing root replacement.
Sources: Ulrich Rosendahl — clinical expertise and Royal Brompton location
Cleveland, Ohio · United States
cardiac surgeon
Gillinov’s Cleveland Clinic practice includes mitral repair and robotic mitral surgery.
Sources: A. Marc Gillinov, MD | Cleveland Clinic · Early results of robotically assisted mitral valve surgery: Analysis of the first 1000 cases
Gurugram · India
cardiac surgeon
Rajput’s listed valve work includes endoscopic mitral and aortic replacement and repeat valve replacement.
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Free Bookimed support. Compare options before deciding.
Free Bookimed support. Compare options before deciding.