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Bridging present and future: a case report of CT-Guided "Chimney" Commando for prosthetic sustainability in the
Samiev Mehriddin1, Yanlin Ye2, Jiayu Shen3
1Department of Cardiovascular Surgery and Institute of Cardiovascular Diseases, West China Hospital of Sichuan University, No.37 Guo Xue Alley, Chengdu, 610041, China.
Background:
Re-operative double-valve replacement in patients with small annuli and concomitant left ventricular outflow tract (LVOT) obstruction represents a significant surgical challenge. The classic Commando procedure entails high risk in re-operative settings with dense fibrosis. The "Chimney" Commando technique provides a modular alternative for anatomical reconstruction. This case emphasizes the role of computed tomography angiography (CTA) with digital twin simulation in preoperative planning and explores the concept of "prosthetic sustainability" as a proposed extension of lifetime valve management, aiming to address the immediate pathology while preserving anatomical feasibility for potential future transcatheter interventions.
Case Presentation:
A 65-year-old woman with a four-decade cardiac surgical history presented with severe prosthetic valve dysfunction due to pannus overgrowth. Preoperative planning with virtual valve implantation predicted catastrophic neo-LVOT obstruction with conventional surgery, contraindicating standard approaches. A CT-guided "Chimney" Commando procedure was performed, involving the construction of a valved conduit to enlarge the annuli and reconfigure the LVOT. The patient recovered uneventfully. Postoperative imaging demonstrated a patent outflow tract, and subsequent simulation suggested that the reconstructed anatomy may be favorable for potential future valve-in-valve procedures.
Conclusions:
This case illustrates the feasibility of a CTA-guided "Chimney" Commando strategy in a high-risk, anatomically complex re-operative double-valve setting. By integrating virtual simulation with an LVOT-oriented reconstruction, this approach successfully mitigated the immediate risk of obstruction and may help preserve the anatomical substrate for future transcatheter valve-in-valve interventions.
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