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Digital retrospective motion-mode display and processing of electron beam cine-computed tomography and other cross-sectional cardiac imaging techniques

机译:数字回顾性运动模式显示以及电子束电影X线断层扫描和其他横截面心脏成像技术的处理

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Abstract: Electron beam computed tomography is unparalleled in its ability to consistently produce high quality dynamic images of the human heart. Its use in quantification of left ventricular dynamics is well established in both clinical and research applications. However, the image analysis tools supplied with the scanners offer a limited number of analysis options. They are based on embedded computer systems which have not been significantly upgraded since the scanner was introduced over a decade ago in spite of the explosive improvements in available computer power which have occured during this period. To address these shortcomings, a workstation-based ventricular analysis system has been developed at our institution. This system, which has been in use for over five years, is based on current workstation technology and therefore has benefited from the periodic upgrades in processor performance available to these systems. The dynamic image segmentation component of this system is an interactively supervised, semi-automatic surface identification and tracking system. It characterizes the endocardial and epicardial surfaces of the left ventricle as two concentric 4D hyper-space polyhedrons. Each of these polyhedrons have nearly ten thousand vertices which are deposited into a relational database. The right ventricle is also processed in a similar manner. This database is queried by other custom components which extract ventricular function parameters such as regional ejection fraction and wall stress. The interactive tool which supervises dynamic image segmentation has been enhanced with a temporal domain display. The operator interactively chooses the spatial location of the endpoints of a line segment while the corresponding space/time image is displayed. These images, with content resembling M-Mode echocardiography, benefit form electron beam computed tomography's high spatial and contrast resolution. The segmented surfaces are displayed along with the imagery. These displays give the operator valuable feedback pertaining to the contiguity of the extracted surfaces. As with M-Mode echocardiography, the velocity of moving structures can be easily visualized and measured. However, many views inaccessible to standard transthoracic echocardiography are easily generated. These features have augmented the interpretability of cine electron beam computed tomography and have prompted the recent cloning of this system into an 'omni-directional M-Mode display' system for use in digital post-processing of echocardiographic parasternal short axis tomograms. This enhances the functional assessment in orthogonal views of the left ventricle, accounting for shape changes particularly in the asymmetric post-infarction ventricle. Conclusions: A new tool has been developed for analysis and visualization of cine electron beam computed tomography. It has been found to be very useful in verifying the consistency of myocardial surface definition with a semi-automated segmentation tool. By drawing on M-Mode echocardiography experience, electron beam tomography's interpretability has been enhanced. Use of this feature, in conjunction with the existing image processing tools, will enhance the presentations of data on regional systolic and diastolic functions to clinicians in a format that is familiar to most cardiologists. Additionally, this tool reinforces the advantages of electron beam tomography as a single imaging modality for the assessment of left and right ventricular size, shape, and regional functions. !12
机译:摘要:电子束计算机断层扫描能够始终如一地产生人类心脏高质量动态图像的能力无与伦比。在临床和研究应用中都很好地确定了其在定量左心室动力学中的用途。但是,扫描仪随附的图像分析工具提供的分析选项数量有限。它们基于嵌入式计算机系统,尽管在此期间出现了可利用的计算机功能的爆炸性改进,但自十年前推出扫描仪以来,该系统尚未进行重大升级。为了解决这些缺点,我们机构开发了基于工作站的心室分析系统。该系统已经使用了五年以上,它基于当前的工作站技术,因此受益于这些系统可用的处理器性能的定期升级。该系统的动态图像分割组件是一个交互式监督的半自动表面识别和跟踪系统。它把左心室的心内膜和心外膜表面表征为两个同心的4D超空间多面体。这些多面体中的每一个都有近一万个顶点,这些顶点已存储到关系数据库中。右心室也以类似方式处理。该数据库由其他自定义组件查询,这些自定义组件提取了心室功能参数,例如区域射血分数和壁应力。监督动态图像分割的交互式工具已通过时域显示得到了增强。在显示相应的空间/时间图像时,操作员以交互方式选择线段端点的空间位置。这些图像的内容类似于M型超声心动图,受益于电子束计算机断层扫描的高空间分辨率和对比度分辨率。分割的表面与图像一起显示。这些显示为操作员提供了与所提取表面的连续性有关的有价值的反馈。与M模式超声心动图一样,运动结构的速度可以轻松地可视化和测量。但是,很容易生成许多标准经胸超声心动图无法获得的视图。这些功能增强了电影电子束计算机断层扫描的可解释性,并促使该系统最近被克隆为“全向M模式显示”系统,用于超声心动胸骨旁胸短轴断层图的数字后处理。这增强了左心室正交视图中的功能评估,特别是在非对称性梗死后心室中考虑了形状变化。结论:已经开发了一种用于分析和可视化电影电子束计算机断层扫描的新工具。已发现使用半自动分割工具在验证心肌表面清晰度的一致性方面非常有用。借助M型超声心动图的经验,电子束断层扫描的可解释性得到了增强。与现有的图像处理工具一起使用此功能,将以大多数心脏病专家熟悉的格式增强临床医生对区域收缩和舒张功能数据的显示能力。此外,该工具还增强了电子束断层扫描的优势,可作为评估左心室和右心室大小,形状和区域功能的单一成像方式。 !12

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