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A Navigation Platform for Guidance of Beating Heart Transapical Mitral Valve Repair

机译:一种导航平台,用于跳动心脏转产二尖瓣修复

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Traditional approaches for repairing and replacing mitral valves have relied on placing the patient on cardiopulmonary bypass (onpump) and accessing the arrested heart directly via a median sternotomy. However, because this approach has the potential for adverse neurological, vascular and immunological sequalae, there is a push towards performing such procedures in a minimally-invasive fashion. Nevertheless, preliminary experience on animals and humans has indicated that ultrasound guidance alone is often not sufficient. This paper describes the first porcine trial of the NeoChord DS1000 (Minnetonka, MN), employed to attach neochords to a mitral valve leaflet where the traditional ultrasound guided protocol has been augmented by dynamic virtual geometric models. In addition to demonstrating that the procedure can be performed with significantly increased precision and speed (up to 6 times), we also record and compare the trajectories used by each of five surgeons to navigate the NeoChord instrument.
机译:修复和更换二尖瓣的传统方法依赖于将患者放置在心肺旁路(肿瘤)上,并通过中位数胸骨切开术直接进入被捕的心脏。然而,因为这种方法具有神经学,血管和免疫序列的潜力,所以存在以微创的方式进行这种方法的推动。尽管如此,对动物和人类的初步经验表明,单独的超声引导往往是不够的。本文介绍了NeoChord DS1000(MINNETONKA,MN)的第一个猪试验,用于将新奇连接到二尖瓣传单,其中传统的超声引导协议已经通过动态虚拟几何模型增强。除了证明程序可以用显着提高的精度和速度(最多6次)进行手术,我们还记录并比较五个外科医生使用的轨迹来导航新奇德仪器。

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