Elibol Ahmet
Department of Cardiovascular Surgery, University of Health Sciences, Kartal Koşuyolu Yüksek İhtisas Training and Research Hospital, Istanbul, Turkey.
Turk Gogus Kalp Damar Cerrahisi Derg. 2020 Jan 23;28(1):43-52. doi: 10.5606/tgkdc.dergisi.2020.19182. eCollection 2020 Jan.
Among valve-sparing aortic root replacement techniques developed for the treatment of aortic root aneurysms and aortic insufficiency, the reimplantation technique (the David procedure) has proved to provide excellent outcomes in experienced hands. However, it involves certain challenges in technical standardization, particularly for graft sizing, which is still far from standardization. A novel device was developed to facilitate and provide all the measurements in high precision and accuracy required for the David procedure. The device allows easy, rapid, and accurate acquisition of the patient"s data and appropriate configuration of the aortic valve, irrespective of the surgeon's subjective evaluations. This all-in-one device provides all the major parameters including graft size, effective height, graft preparation, and simulation of the aortic coaptation. The device was successfully tested on a Devotini aortic root simulator and on a bovine heart ex vivo. The device proposed herein to be used for reimplantation has one explicit advantage: all valve geometry to be reconstructed and repaired can be simulated on the device with all its elements, in particular, the commissures and the cusps. Thus, all that is necessary can be clearly visualized in a manner whatever the configuration the surgeon prefers, particularly the creation of the effective height.
在为治疗主动脉根部瘤和主动脉瓣关闭不全而开发的保留瓣膜主动脉根部置换技术中,再植入技术(大卫手术)已被证明在经验丰富的医生手中能取得出色的效果。然而,它在技术标准化方面存在一定挑战,特别是在移植物尺寸确定方面,目前仍远未实现标准化。一种新型设备被开发出来,以促进并提供大卫手术所需的高精度和高准确性的所有测量。该设备能够轻松、快速且准确地获取患者数据,并对主动脉瓣进行适当配置,而无需考虑外科医生的主观评估。这种一体化设备提供了所有主要参数,包括移植物尺寸、有效高度、移植物制备以及主动脉瓣贴合模拟。该设备已在德沃蒂尼主动脉根部模拟器和离体牛心脏上成功进行了测试。本文提出用于再植入的该设备有一个明显优势:所有要重建和修复的瓣膜几何结构都可以在设备上及其所有元件上进行模拟,特别是瓣叶联合和瓣叶尖。因此,无论外科医生喜欢何种配置,特别是有效高度的创建,所有必要的内容都可以清晰地可视化。