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心脏影像学与三维打印技术在经皮心耳封堵术中的作用。

Role of cardiac imaging and three-dimensional printing in percutaneous appendage closure.

机构信息

Paediatric and Adult Congenital Heart Disease Department, Hôpital Cardiologique du Haut-Lévêque, CHU de Bordeaux, 33604 Bordeaux-Pessac, France.

Hôpital Privé "Les Franciscaines", 30032 Nîmes, France.

出版信息

Arch Cardiovasc Dis. 2018 Jun-Jul;111(6-7):411-420. doi: 10.1016/j.acvd.2018.04.005. Epub 2018 Jun 7.

Abstract

Atrial fibrillation is the most frequent cardiac arrhythmia, affecting up to 13% of people aged>80 years, and is responsible for 15-20% of all ischaemic strokes. Left atrial appendage occlusion devices have been developed as an alternative approach to reduce the risk of stroke in patients for whom oral anticoagulation is contraindicated. The procedure can be technically demanding, and obtaining a complete left atrial appendage occlusion can be challenging. These observations have emphasized the importance of preprocedural planning, to optimize the accuracy and safety of the procedure. In this setting, a multimodality imaging approach, including three-dimensional imaging, is often used for preoperative assessment and procedural guidance. These imaging modalities, including transoesophageal echocardiography and multislice computed tomography, allow acquisition of a three-dimensional dataset that improves understanding of the cardiac anatomy; dedicated postprocessing software integrated into the clinical workflow can be used to generate a stereolithography file, which can be printed in a rubber-like material, seeking to replicate the myocardial tissue characteristics and mechanical properties of the left atrial appendage wall. The role of multimodality imaging and 3D printing technology offers a new field for implantation simulation, which may have a major impact on physician training and technique optimization.

摘要

心房颤动是最常见的心律失常,影响高达 13%的年龄>80 岁的人,并负责所有缺血性中风的 15-20%。左心耳闭塞装置已被开发为替代方法,以降低不适合口服抗凝治疗的患者中风的风险。该手术可能具有技术挑战性,并且很难获得完全的左心耳闭塞。这些观察结果强调了术前规划的重要性,以优化手术的准确性和安全性。在这种情况下,通常使用多模态成像方法,包括三维成像,进行术前评估和手术指导。这些成像方式,包括经食管超声心动图和多层计算机断层扫描,允许采集三维数据集,从而提高对心脏解剖结构的理解;专用的后处理软件集成到临床工作流程中,可以生成立体光刻文件,可以用橡胶状材料打印,以寻求复制左心耳壁的心肌组织特征和机械特性。多模态成像和 3D 打印技术的作用为植入模拟提供了一个新的领域,这可能对医生培训和技术优化产生重大影响。

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