Division of Cardiology, Ward Family Heart Center, Children's Mercy Hospital, 2401 Gillham Road, 64108, Kansas City, MO, USA.
Curr Cardiol Rep. 2023 Jun;25(6):597-605. doi: 10.1007/s11886-023-01882-x. Epub 2023 Apr 22.
While most of the work pertaining to 3D printing in cardiology has been based on 3D CT and MRI datasets, due to the recent advents in 3D printing and 3D echocardiography, 3D printing from echocardiography has now become feasible. In this review, we discuss the workflow, applications, limitations, and potential future directions of 3D echocardiography-based 3D printing.
3D printing using 3D echocardiographic datasets has been successfully deployed in the field of cardiovascular medicine in the twenty-first century. It was shown to provide a significant additive value particularly with regards to visualization of valves and subvalvar apparatus. Given its limitations of limited field of view and somewhat lower spatial resolution, this approach is likely ideally suited for a combined multi-modality-based printing. Patient-specific, 3D echocardiography-derived 3D-printed models are now quite feasible. This can be used for surgical/procedural planning and training for optimal outcomes.
尽管心脏病学中与 3D 打印相关的大部分工作都是基于 3D CT 和 MRI 数据集,但由于 3D 打印和 3D 超声心动图的最新进展,现在已经可以从超声心动图进行 3D 打印。在这篇综述中,我们讨论了基于超声心动图的 3D 打印的工作流程、应用、局限性和潜在的未来方向。
在 21 世纪,使用 3D 超声心动图数据集的 3D 打印已成功应用于心血管医学领域。它在显示瓣膜和瓣下装置方面显示出了显著的附加价值。鉴于其有限的视野和稍低的空间分辨率,这种方法可能非常适合基于多模态的联合打印。基于患者的、超声心动图衍生的 3D 打印模型现在已经相当可行。这可用于手术/程序规划和培训,以实现最佳效果。