BioCardioLab, Fondazione Toscana "G. Monasterio", Massa, Italy.
Pediatric Cardiology Unit, Fondazione Toscana "G. Monasterio" Massa, Italy.
Curr Pharm Des. 2021;27(16):1918-1930. doi: 10.2174/1381612826666200622132440.
3D printing represents an emerging technology in the field of cardiovascular medicine. 3D printing can help to perform a better analysis of complex anatomies to optimize intervention planning.
A systematic review was performed to illustrate the 3D printing technology and to describe the workflow to obtain 3D printed models from patient-specific images. Examples from our laboratory of the benefit of 3D printing in planning interventions were also reported.
3D printing technique is reliable when applied to high-quality 3D image data (CTA, CMR, 3D echography), but it still needs the involvement of expert operators for image segmentation and mesh refinement. 3D printed models could be useful in interventional planning, although prospective studies with comprehensive and clinically meaningful endpoints are required to demonstrate the clinical utility.
3D printing can be used to improve anatomy understanding and surgical planning.
3D 打印技术是心血管医学领域的一项新兴技术。3D 打印可以帮助更好地分析复杂的解剖结构,从而优化介入治疗计划。
本研究进行了系统综述,以阐明 3D 打印技术,并描述从患者特定图像获取 3D 打印模型的工作流程。还报告了我们实验室在介入治疗计划中使用 3D 打印的益处的例子。
3D 打印技术在应用于高质量的 3D 图像数据(CTA、CMR、3D 超声心动图)时是可靠的,但仍需要专家操作人员进行图像分割和网格细化。3D 打印模型在介入治疗计划中可能有用,尽管需要进行具有全面和有临床意义终点的前瞻性研究来证明其临床实用性。
3D 打印可用于改善解剖理解和手术计划。