Engelhardt Sandy, De Simone Raffaele, Al-Maisary Sameer, Kolb Silvio, Karck Matthias, Meinzer Hans-Peter, Wolf Ivo
Medical and Biological Informatics, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Department of Cardiac Surgery, University Hospital Heidelberg, Heidelberg, Germany.
Int J Comput Assist Radiol Surg. 2016 Oct;11(10):1891-904. doi: 10.1007/s11548-016-1353-z. Epub 2016 Feb 25.
Mitral valve reconstruction is a widespread surgical method to repair incompetent mitral valves, which usually includes implantation of a ring prosthesis. To date, intraoperative analysis of the mitral valve is merely based on visual assessment using simple surgical tools, which might not allow for accurate assessment of the complex anatomy.
We propose a novel intraoperative computer-based assistance system, which combines passive optical tracking technology with tailored measurement strategies applicable during different phases of the intraoperative workflow. Based on the assessment of the valvular apparatus by customized tracked instruments, the system (1) generates an enhanced three-dimensional visualization, which (2) incorporates accurate quantifications and (3) provides assistance, e.g., in terms of virtual prosthesis selection.
Phantom experiments in a realistic environment revealed a high system accuracy (mean precision [Formula: see text] mm and mean trueness [Formula: see text] mm) and a low user error (mean precision [Formula: see text] mm and mean trueness [Formula: see text] mm). The assistance system was successfully applied five times during open and minimally invasive reconstructive surgery in patients having mitral valve insufficiency. The measurement steps integrate well into the traditional workflow, enhancing the surgeon's three-dimensional perception and generating a suggestion for an appropriate prosthesis.
The proposed assistance system provides a novel, accurate, and reproducible method for assessing the valvular geometry intraoperatively.
二尖瓣重建是一种广泛应用于修复二尖瓣功能不全的外科手术方法,通常包括植入人工瓣膜环。迄今为止,二尖瓣的术中分析仅基于使用简单手术工具的视觉评估,这可能无法对复杂的解剖结构进行准确评估。
我们提出了一种新型的术中计算机辅助系统,该系统将被动光学跟踪技术与适用于术中工作流程不同阶段的定制测量策略相结合。基于定制跟踪器械对瓣膜装置的评估,该系统(1)生成增强的三维可视化图像,(2)纳入精确的量化数据,(3)提供辅助,例如在虚拟假体选择方面。
在真实环境中的模拟实验显示该系统具有较高的准确性(平均精度[公式:见正文]毫米,平均真值[公式:见正文]毫米)和较低的用户误差(平均精度[公式:见正文]毫米,平均真值[公式:见正文]毫米)。该辅助系统在二尖瓣关闭不全患者的开放和微创重建手术中成功应用了5次。测量步骤很好地融入了传统工作流程,增强了外科医生的三维感知,并生成了合适假体的建议。
所提出的辅助系统为术中评估瓣膜几何形状提供了一种新颖、准确且可重复的方法。