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An Augmented Reality Environment for Image-Guidance of Off-Pump Mitral Valve Implantation

机译:泵外二尖瓣植入的图像指导的增强现实环境

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摘要

Clinical research has been rapidly evolving towards the development of less invasive surgical procedures. We recently embarked on a project to improve intracardiac beating heart interventions. Our novel approach employs new surgical technologies and support from image-guidance via pre-operative and intra-operative imaging (i.e. two-dimensional echocardiography) to substitute for direct vision. Our goal was to develop a versatile system that allowed for safe cardiac port access, and provide sufficient image-guidance with the aid of a virtual reality environment to substitute for the absence of direct vision, while delivering quality therapy to the target. Specific targets included the repair and replacement of heart valves and the repair of septal defects. The ultimate objective was to duplicate the success rate of conventional open-heart surgery, but to do so via a small incision, and to evaluate the efficacy of the procedure as it is performed. This paper describes the software and hardware components, along with the methodology for performing mitral valve replacement as one example of this approach, using ultrasound and virtual tool models to position and fasten the valve in place.
机译:临床研究已迅速发展为侵入性较小的手术程序的发展。我们最近开展了一个项目,以改善心脏内跳动的心脏干预。我们的新颖方法采用了新的外科技术,并通过术前和术中成像(即二维超声心动图)提供的图像指导来替代直接视觉。我们的目标是开发一种多功能系统,该系统可确保安全地进入心脏端口,并借助虚拟现实环境来提供足够的图像指导,以替代不存在直视的情况,同时为目标患者提供优质的治疗。具体目标包括心脏瓣膜的修复和更换以及间隔缺损的修复。最终目的是复制常规心脏直视手术的成功率,但要通过小切口来实现,并评估该手术的有效性。本文描述了软件和硬件组件,以及执行二尖瓣置换术的方法(作为这种方法的一个示例),该方法使用超声和虚拟工具模型来定位和固定瓣膜。

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