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Novel off-pump ventricular septal myectomy for obstructive hypertrophic cardiomyopathy: A paradigm shift in surgical
Jiangtao Li1,2,3, Song Wan1,4, Xiang Wei1,2,3
1Division of Cardiovascular Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Insights
A new transapical beating-heart septal myectomy (TA-BSM) offers a less invasive surgical option for obstructive hypertrophic cardiomyopathy (oHCM). This innovative technique provides real-time assessment, improving safety and efficacy for patients worldwide.
Area of Science:
- Cardiovascular Surgery
- Medical Devices
- Cardiology
Background:
- Obstructive hypertrophic cardiomyopathy (oHCM) poses significant challenges due to left ventricular outflow tract obstruction.
- Surgical septal myectomy (SM) is the gold standard but limited by surgical field and assessment difficulties.
- Current SM techniques have a steep learning curve, hindering widespread adoption.
Purpose of the Study:
- To introduce an innovative transapical beating-heart septal myectomy (TA-BSM) procedure.
- To present the design of a novel device enabling off-pump, real-time resection assessment.
- To evaluate the safety and efficacy of TA-BSM and analyze its learning curve.
Main Methods:
- Development of a transapical beating-heart myectomy device for off-pump procedures.
- Procedure performed via a small left thoracotomy with real-time resection assessment.
- Evidence synthesis from swine feasibility, first-in-human, and large-scale clinical studies.
Main Results:
- The TA-BSM procedure demonstrates a compelling safety and efficacy profile.
- Initial studies indicate successful relief of obstruction with minimal invasiveness.
- Analysis of the learning curve provides a framework for surgical training.
Conclusions:
- TA-BSM represents a paradigm shift in oHCM surgery, moving towards a dynamic and precise intervention.
- This technique has profound implications for global dissemination of oHCM care.
- TA-BSM has the potential to make life-changing surgery accessible to underserved populations worldwide.
Abstract:
Obstructive hypertrophic cardiomyopathy (oHCM) presents a significant clinical challenge, with left ventricular outflow tract obstruction being a primary driver of symptoms and adverse outcomes. Surgical septal myectomy (SM) performed under cardiopulmonary bypass and cardioplegic arrest has stood as the gold standard therapy, offering durable and complete relief of obstruction. However, its widespread adoption has been severely hampered by the limited surgical field, lack of real-time intraoperative assessment, and steep learning curve. In an effort to streamline SM, we have developed an innovative transapical beating-heart SM (TA-BSM) procedure. In this article, we outline the design of the beating-heart myectomy device that enables off-pump, real-time assessment of resection via a small left thoracotomy. We synthesize the evidence from the initial feasibility study in swine, the first-in-human trial, and large-scale clinical applications, indicating its compelling safety and efficacy profile. Furthermore, we analyze the learning curve of the TA-BSM procedure and present a structured framework for training future surgeons. Finally, we discuss the profound implications of this technique for global dissemination of oHCM care, potentially making this life-changing surgery accessible to thousands of underserved patients worldwide. In summary, TA-BSM represents not merely an incremental improvement but a true paradigm shift, moving oHCM surgery from a static, blind procedure to a dynamic, precise intervention.
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