Jędrzejek Marek, Peszek-Przybyła Ewa, Jadczyk Tomasz, Zemik Jakub, Piprek Paulina, Pysz Piotr, Kozłowski Michał, Wojakowski Wojciech, Smolka Grzegorz
Department of Cardiology and Structural Heart Diseases, Medical University of Silesia, Katowice, Poland.
Faculty of Sciences and Technology, University of Silesia, Katowice, Poland.
Postepy Kardiol Interwencyjnej. 2023 Sep;19(3):270-276. doi: 10.5114/aic.2023.131481. Epub 2023 Sep 27.
Transcatheter closure of paravalvular leak (PVL) is still a demanding procedure due to the complex anatomy of PVL channels and risk of interference between the implanted occluder and surrounding structures. Efforts are made to improve procedural outcomes in transcatheter structural heart interventions by establishing treatment strategy in advance with the use of 3D-printed physical models based on data obtained from cardiac computed tomography (CT) studies.
In this feasibility study 3D printing of PVL models based on data recorded during transesophageal echocardiography (TEE) examinations was evaluated.
3D-TEE data of patients with significant PVL around mitral valve prostheses were used to prepare 3D models. QLab software was used to export DICOM images in Cartesian DICOM format of each PVL with the surrounding tissue. Image segmentation was performed in Slicer, a free, open-source software package used for imaging research. Models were printed to actual size with the Polyjet printer with a transparent, rigid material. We measured dimensions of PVLs both in TEE recordings and printed 3D models. The results were correlated with sizes of occluding devices used to close the defects.
In 7 out of 8 patients, there was concordance between procedurally implanted occluders and pre-procedurally matched closing devices based on 3D-printed models.
3D-printing from 3D-TEE is technically feasible. Both shape and location of PVLs are preserved during model preparation and printing. It remains to be tested whether 3D printing would improve outcomes of percutaneous PVL closure.
由于瓣周漏(PVL)通道的解剖结构复杂,且植入封堵器与周围结构存在干扰风险,经导管闭合瓣周漏仍是一项具有挑战性的操作。通过利用心脏计算机断层扫描(CT)研究获得的数据预先建立治疗策略,努力改善经导管结构性心脏介入治疗的手术效果。
在本可行性研究中,评估基于经食管超声心动图(TEE)检查记录的数据进行PVL模型的3D打印。
使用二尖瓣人工瓣膜周围存在明显PVL的患者的3D-TEE数据来制备3D模型。使用QLab软件以笛卡尔DICOM格式导出每个PVL及其周围组织图像。在用于成像研究的免费开源软件包Slicer中进行图像分割。使用Polyjet打印机以透明刚性材料将模型打印成实际尺寸。我们在TEE记录和打印的3D模型中测量PVL的尺寸。将结果与用于闭合缺损的封堵装置的尺寸相关联。
8例患者中有7例,基于3D打印模型,术中植入的封堵器与术前匹配的闭合装置一致。
从3D-TEE进行3D打印在技术上是可行的。在模型制备和打印过程中,PVL的形状和位置均得以保留。3D打印是否会改善经皮PVL闭合的效果仍有待测试。