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June 17, 2026European Heart Journal - Case Reports0 citationsOpen Access

Post-Procedural CT Comparison of Predicted and Actual Neo-LVOT After One-Session Double Valve-in-Valve Implantation: A Case Report

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WLWei-tong LiuJZJu ZhangKZKai Zhang

Key Result

A one-session transapical double valve-in-valve procedure resulted in an actual neo-LVOT area of 280.6 mm2, a 20.3 mm2 reduction from the CT-predicted area, with no haemodynamic obstruction.

Key Points

  • This case examines the differences between predicted and actual neo-LVOT areas following a double valve-in-valve procedure.
  • Case report of a 74-year-old woman with heart failure and degenerated prostheses.
  • Used full-cycle ECG-gated 4D-CT for pre- and post-procedural assessments of neo-LVOT area.
  • Evaluated hemodynamic function using post-procedural echocardiography.
  • Predicted neo-LVOT area was 300.9 mm2, while post-procedural area was 280.6 mm2, indicating a reduction of 20.3 mm2.
  • Asymmetric ventricular protrusion of the mitral prosthesis measured approximately 1.2 mm.
  • Echocardiography confirmed normal valve function with no LVOT obstruction.

Study Design

Type

Case Report (n=1)

Structured PICO

P
Population
A 74-year-old woman with degenerated surgical mitral and aortic bioprostheses and NYHA class IV heart failure undergoing a one-session double valve-in-valve procedure.
I
Intervention
One-session transapical double valve-in-valve (ViV) procedure (aortic ViV followed by mitral ViV) guided by full-cycle ECG-gated 4D-CT.
O
Outcome
Neo-LVOT area measured by post-procedural 4D-CT compared to pre-procedural prediction.surrogate

CT-based planning correctly identified procedural feasibility for a double valve-in-valve procedure, though post-procedural CT revealed minor, clinically insignificant geometric variability in the neo-LVOT area.

Abstract

Abstract Background Left ventricular outflow tract (LVOT) obstruction is a serious complication of transcatheter mitral valve replacement and mitral valve-in-valve (ViV) procedures. CT-based virtual valve implantation predicts the neo-LVOT area, but it assumes idealized seating and may not fully reflect procedural interaction during double-valve intervention. Case summary A 74-year-old woman with degenerated surgical mitral and aortic bioprostheses presented with NYHA class IV heart failure. Full-cycle ECG-gated 4D-CT identified the minimum predicted neo-LVOT at 43% of the R-R interval (300.9 mm2). A one-session transapical double ViV procedure was performed. The aortic ViV was performed first because CT simulation showed that the aortic balloon would expand between the two strut posts of the surgical mitral prosthesis; implanting the mitral valve first could have exposed the newly deployed mitral prosthesis to compression during subsequent aortic balloon expansion. Post-procedural 4D-CT, evaluated using the same workflow and compared at 43%, showed a neo-LVOT area of 280.6 mm2, a 20.3 mm2 reduction, with approximately 1.2 mm asymmetric ventricular protrusion of the mitral prosthesis. Echocardiography showed normal valve-in-valve function and no haemodynamic LVOT obstruction. Discussion This case demonstrates that CT-based planning correctly identified procedural feasibility, while post-procedural CT revealed measurable geometric variability. The finding remained well above high-risk thresholds and should be interpreted as a hypothesis-generating geometric observation rather than clinically significant obstruction.

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Cite This Study

Liu et al. (2026) conducted a case report in Degenerated surgical mitral and aortic bioprostheses with NYHA class IV heart failure (n=1). One-session transapical double valve-in-valve (ViV) procedure was evaluated on Neo-LVOT area. A one-session transapical double valve-in-valve procedure resulted in an actual neo-LVOT area of 280.6 mm2, a 20.3 mm2 reduction from the CT-predicted area, with no haemodynamic obstruction.

synapsesocial.com/papers/6a32689f9da909cb8f3dcc59https://doi.org/10.1093/ehjcr/ytag450
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