IEEE Trans Med Imaging. 2015 Oct;34(10):2025-35. doi: 10.1109/TMI.2015.2412465. Epub 2015 Mar 11.
Minimally invasive valvular intervention commonly requires intra-procedural navigation to provide spatial and temporal information of relevant cardiac structures and device components. Recently intra-procedural trans-esophageal echocardiography (TEE) has been exploited for this purpose due to its accessibility, low cost, ease of use, and real-time imaging capacity. However, the position and orientation of tissue targets relative to surgical tools can be challenging to perceive, particularly using 2D imaging planes. In this paper, we propose the use of CT images to provide a high-quality 3D context to enhance ultrasound images through image registration, providing an augmented guidance system with minimal impact on standard clinical workflow. We also describe an approach to generate synthetic 4D CT images through non-rigid registration of available ultrasound. This can be employed to avoid a requirement for higher radiation. Synthetic CT images were validated through direct comparison of synthetic and real multi-phase CT images. Validation of CT and ultrasound image registration was performed for both dynamic and synthetic CT image datasets. Our results demonstrated that the synthetically generated dynamic CT images provide similar anatomical representation for relevant cardiac anatomy relative to real dynamic CT images, and similar high registration accuracy that can be achieved for intra-procedural TEE to this versus real dynamic CT images.
微创瓣膜介入通常需要术中导航,以提供相关心脏结构和器械部件的空间和时间信息。由于术中经食管超声心动图(TEE)具有可及性、低成本、易用性和实时成像能力,因此最近已被用于该目的。然而,相对于手术工具,组织目标的位置和方向可能难以感知,特别是在使用二维成像平面时。在本文中,我们提出使用 CT 图像来提供高质量的 3D 背景,通过图像配准增强超声图像,从而提供一个增强的引导系统,对标准临床工作流程的影响最小。我们还描述了一种通过可用超声的非刚性配准生成合成 4D CT 图像的方法。这可以用来避免更高的辐射要求。通过直接比较合成和真实多期 CT 图像对合成 CT 图像进行了验证。针对动态和合成 CT 图像数据集对 CT 和超声图像配准进行了验证。我们的结果表明,与真实动态 CT 图像相比,合成生成的动态 CT 图像为相关心脏解剖结构提供了类似的解剖学表示,并且可以实现与真实动态 CT 图像相比相似的高注册精度。