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Ultrasound based mitral valve annulus tracking for off-pump beating heart mitral valve repair

机译:基于超声的二尖瓣环跟踪,用于体外循环搏动心脏二尖瓣修复

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Mitral regurgitation (MR) occurs when the mitral valve cannot close properly during systole. The NeoChord© tool aims to repair MR by implanting artificial chordae tendineae on flail leaflets inside the beating heart, without a cardiopulmonary bypass. Image guidance is crucial for such a procedure due to the lack of direct vision of the targets or instruments. While this procedure is currently guided solely by transesophageal echocardiography (TEE), our previous work has demonstrated that guidance safety and efficiency can be significantly improved by employing augmented virtuality to provide virtual presentation of mitral valve annulus (MVA) and tools integrated with real time ultrasound image data. However, real-time mitral annulus tracking remains a challenge. In this paper, we describe an image-based approach to rapidly track MVA points on 2D/biplane TEE images. This approach is composed of two components: an image-based phasing component identifying images at optimal cardiac phases for tracking, and a registration component updating the coordinates of MVA points. Preliminary validation has been performed on porcine data with an average difference between manually and automatically identified MVA points of 2.5mm. Using a parallelized implementation, this approach is able to track the mitral valve at up to 10 images per second.
机译:当二尖瓣收缩期不能正常关闭时,就会发生二尖瓣反流(MR)。 NeoChord©工具旨在通过在跳动的心脏内部的fl叶上植入人工腱索肌腱而无需进行心肺旁路手术来修复MR。由于缺乏对目标或仪器的直接视野,因此图像指导对于此类手术至关重要。尽管目前仅通过经食道超声心动图(TEE)指导该手术,但我们以前的工作表明,通过使用增强的虚拟技术提供二尖瓣环(MVA)的虚拟表示以及与实时超声相集成的工具,可以显着提高指导安全性和效率图像数据。但是,实时二尖瓣环跟踪仍然是一个挑战。在本文中,我们描述了一种基于图像的方法来快速跟踪2D /双平面TEE图像上的MVA点。该方法由两个组件组成:基于图像的定相组件,用于识别处于最佳心脏相位的图像以进行跟踪;以及配准组件,用于更新MVA点的坐标。初步验证已在猪数据上进行,手动和自动识别的MVA点之间的平均差为2.5mm。使用并行化实现,此方法能够以每秒高达10张图像的速度跟踪二尖瓣。

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