Heart & Vascular Institute, Cleveland Clinic Abu Dhabi, PO Box 112412, Abu Dhabi, United Arab Emirates.
Imaging Institute, Cleveland Clinic Abu Dhabi, Abu Dhabi, United Arab Emirates.
Eur Heart J. 2018 Apr 14;39(15):1246-1254. doi: 10.1093/eurheartj/ehx016.
Advanced percutaneous and surgical procedures in structural and congenital heart disease require precise pre-procedural planning and continuous quality control. Although current imaging modalities and post-processing software assists with peri-procedural guidance, their capabilities for spatial conceptualization remain limited in two- and three-dimensional representations. In contrast, 3D printing offers not only improved visualization for procedural planning, but provides substantial information on the accuracy of surgical reconstruction and device implantations. Peri-procedural 3D printing has the potential to set standards of quality assurance and individualized healthcare in cardiovascular medicine and surgery. Nowadays, a variety of clinical applications are available showing how accurate 3D computer reformatting and physical 3D printouts of native anatomy, embedded pathology, and implants are and how they may assist in the development of innovative therapies. Accurate imaging of pathology including target region for intervention, its anatomic features and spatial relation to the surrounding structures is critical for selecting optimal approach and evaluation of procedural results. This review describes clinical applications of 3D printing, outlines current limitations, and highlights future implications for quality control, advanced medical education and training.
在结构性和先天性心脏病的介入和手术治疗中,需要精确的术前规划和持续的质量控制。虽然当前的成像方式和后处理软件可以辅助手术过程中的引导,但它们在二维和三维表示中的空间概念化能力仍然有限。相比之下,3D 打印不仅可以改进手术规划的可视化效果,还可以提供有关手术重建和器械植入准确性的大量信息。手术过程中的 3D 打印有可能为心血管医学和外科手术确立质量保证和个体化医疗的标准。如今,有多种临床应用可以展示 3D 计算机重建成像和原生解剖结构、嵌入病变以及植入物的物理 3D 打印模型的精确性,以及它们如何帮助开发创新疗法。准确的成像可以显示包括介入目标区域在内的病变、其解剖特征以及与周围结构的空间关系,对于选择最佳方法和评估手术结果至关重要。本文描述了 3D 打印的临床应用,概述了当前的局限性,并强调了其在质量控制、高级医学教育和培训方面的未来意义。