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June 4, 2026BioMedical Engineering OnLine0 citationsOpen Access

The influence of successful septal myectomy on myocardial stress distributions in the left ventricle: a computational analysis

HZHeng ZuoLDLong DengALAn Li

Key Result

Successful septal myectomy significantly decreased mean myocardial stress by 27.7% (p<0.001) and mean strain by 26.3% (p<0.001) in patient-specific computational models.

Key Points

  • This study aims to investigate how successful septal myectomy affects myocardial stress distribution in the left ventricle.
  • Constructed patient-specific computational models using CT imaging data from five patients before and after surgery.
  • Created 10 finite element models to evaluate myocardial stress and strain.
  • Divided left ventricular wall nodes into apex, midventricular, and basal regions for analysis.
  • Mean myocardial stress decreased by 27.7% (p < 0.001) following septal myectomy.
  • Mean strain in the myocardium decreased by 26.3% (p < 0.001) post-surgery.
  • Midventricular stress showed a 50.3% decrease and apex stress a 54.0% decrease, while the basal region decreased by 23.5%.

Structured PICO

Does successful septal myectomy reduce myocardial stress and strain in the left ventricle in patient-specific computational models?

P
Population
5 patients with CT imaging data collected before and after successful septal myectomy used to create patient-specific finite element models.
I
Intervention
Successful septal myectomy (post-surgery state)
C
Comparator
Pre-surgery state
O
Outcome
Myocardial stress and strain of all integral nodes in the myocardium of the left ventriclesurrogate

Successful septal myectomy significantly reduces myocardial stress and strain in the left ventricle, particularly in the midventricular and apex regions, based on patient-specific computational modeling.

Main Result

Effect estimate: 27.7% decrease in mean stress

p-value: p=< 0.001

Abstract

Mechanical forces significantly influence the initiation, progression, and remodeling of cardiovascular disease. In this study, CT-based patient-specific computational models were constructed to investigate the effects of the successful septal myectomy on myocardial stress distribution in the left ventricle. CT imaging data from five patients, collected both before and after successful septal myectomy, were used to create 10 patient-specific finite element models. Myocardial stress and strain of all integral nodes in the myocardium of the left ventricle were extracted from the simulation results. All the nodes in the left ventricular wall were divided into apex, midventricular, and basal region groups according to their position in the left ventricle. It was found that the mean stress decreased by 27.7% ( p < 0.001) and the mean strain decreased by 26.3% ( p < 0.001) after the surgery. The reduction in myocardial stress was more pronounced in the midventricular (50.3% decrease) and apex (54.0% decrease) regions compared to the basal region (23.5% decrease). These findings suggest that successful septal myectomy significantly reduces myocardial stress within the left ventricle, particularly in the midventricular and apex regions. Beyond alleviating left ventricular outflow tract obstruction, this surgery may also lower the risk of myocardial ischemia, acute myocardial injury, and subsequent myocardial fibrosis by reducing myocardial stress.

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Cite This Study

Zuo et al. (2026) studied Left ventricular outflow tract obstruction requiring septal myectomy (n=5). Successful septal myectomy vs. Pre-myectomy (baseline) was evaluated on Myocardial stress and strain in the left ventricle (27.7% decrease in mean stress, p=< 0.001). Successful septal myectomy significantly decreased mean myocardial stress by 27.7% (p<0.001) and mean strain by 26.3% (p<0.001) in patient-specific computational models.

synapsesocial.com/papers/6a211780d499ed480b170487https://doi.org/10.1186/s12938-026-01592-9
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