Abstract
Background: Post-infarct ventricular septal defect (PIVSD) is a serious complication of myocardial infarction. We evaluated 3D-printing models in PIVSD clinical assessment and the feasibility of statistical shape modeling for morphological analysis of the defects.
Methods: Models (n = 15) reconstructed from computed tomography data were evaluated by clinicians (n = 8). Statistical shape modeling was performed on 3D meshes to calculate the mean morphological configuration of the defects.
Results: Clinicians’ evaluation highlighted the models’ utility in displaying defects for interventional/surgical planning, education/training and device development. However, models lack dynamic representation. Morphological analysis was feasible and revealed oval-shaped (n = 12) and complex channel-like (n = 3) defects.
Conclusion: 3D-PIVSD models can complement imaging data for teaching and procedural planning. Statistical shape modeling is feasible in this scenario.
Methods: Models (n = 15) reconstructed from computed tomography data were evaluated by clinicians (n = 8). Statistical shape modeling was performed on 3D meshes to calculate the mean morphological configuration of the defects.
Results: Clinicians’ evaluation highlighted the models’ utility in displaying defects for interventional/surgical planning, education/training and device development. However, models lack dynamic representation. Morphological analysis was feasible and revealed oval-shaped (n = 12) and complex channel-like (n = 3) defects.
Conclusion: 3D-PIVSD models can complement imaging data for teaching and procedural planning. Statistical shape modeling is feasible in this scenario.
| Original language | English |
|---|---|
| Article number | 3DP003 |
| Number of pages | 9 |
| Journal | Journal of 3D Printing in Medicine |
| Volume | 7 |
| Issue number | 1 |
| Early online date | 18 Jan 2023 |
| DOIs | |
| Publication status | E-pub ahead of print - 18 Jan 2023 |
Bibliographical note
Publisher Copyright:© 2023 Giovanni Biglino.
Research Groups and Themes
- Bristol Heart Institute
Keywords
- 3D printing
- myocardial infarction
- statistical shape modeling
- ventricular septal defect
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