Balzer Jan, Kühl Harald, Rassaf Tienush, Hoffmann Rainer, Schauerte Patrick, Kelm Malte, Franke Andreas
Department for Cardiology, Pulmonology, and Vascular Medicine, University Hospital RWTH Aachen, Aachen, Germany.
Clin Res Cardiol. 2008 Sep;97(9):565-74. doi: 10.1007/s00392-008-0676-3. Epub 2008 May 29.
Recently, a new generation of transesophageal echocardiography (TEE) probes with a novel matrix array technique was introduced, allowing three-dimensional (3D) presentation of cardiac structures in real-time. This article aims to describe our first experiences with this new technique in the guidance of percutaneous cardiac interventions in the catheter laboratory. We used a matrix array 3D TEE probe connected to a 3D-capable echocardiographic system. The 3D TEE system provides exact imaging of the pathomorphology of cardiac structures as well as intracardiac catheters and devices in real-time. We applied this innovative technique to monitor percutaneous cardiac interventions in the catheter laboratory, such as atrial septal defect (ASD) or patent foramen ovale (PFO) closures, revalving procedures such as percutaneous transvenous mitral valve annuloplasty (PTMA), aortic valve replacements, and electrophysiological procedures. Our findings demonstrate that real-time 3D TEE provides a novel imaging technique to guide interventions in the catheter laboratory, providing fast and complete information about the underlying pathomorphology, improving spatial orientation, and additionally monitoring online the procedure without loss of image quality. These benefits may accelerate the learning curve and improve confidence of the interventional cardiologist in order to increase safety, accuracy, and efficacy of interventional cardiac procedures.
最近,新一代采用新型矩阵阵列技术的经食管超声心动图(TEE)探头问世,可实时呈现心脏结构的三维(3D)图像。本文旨在描述我们在导管室经皮心脏介入治疗中首次使用这项新技术的经验。我们使用了连接到具备3D功能的超声心动图系统的矩阵阵列3D TEE探头。3D TEE系统可实时精确成像心脏结构以及心内导管和装置的病理形态。我们将这项创新技术应用于导管室经皮心脏介入治疗的监测,如房间隔缺损(ASD)或卵圆孔未闭(PFO)封堵术、经皮经静脉二尖瓣环成形术(PTMA)等瓣膜修复手术、主动脉瓣置换术以及电生理手术。我们的研究结果表明,实时3D TEE为导管室介入治疗提供了一种新颖的成像技术,能快速、完整地提供有关潜在病理形态的信息,改善空间定位,并在不损失图像质量的情况下在线监测手术过程。这些优势可能会加快学习曲线,增强介入心脏病专家的信心,从而提高心脏介入手术的安全性、准确性和有效性。