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Measurement and display of instantaneous regional motion of the myocardium

机译:心肌瞬时区域运动的测量和显示

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Abstract: Quantitative assessment of regional heart motion has significant potential for more accurate diagnosis of heart disease and/or cardiac irregularities. Local heart motion may be studied from medical imaging sequences. Using functional parametric mapping, regional myocardial motion during a cardiac cycle can be color mapped onto a deformable heart model to obtain better understanding of the structure- to-function relationships in the myocardium. In this study, 3D reconstructions were obtained from the Dynamic Spatial Reconstructor at 15 time points throughout one cardiac cycle. Deformable models were created from the 3D images for each time point of the cardiac cycle. From these polygonal models, regional excursions and velocities of each vertex representing a unit of myocardium were calculated for successive time intervals. The calculated results were visualized through model animations and/or specially formatted static images. The time point of regional maximum velocity and excursion of myocardium through the cardiac cycle was displayed using color mapping. The absolute value of regional maximum velocity and maximum excursion were displayed in a similar manner. Using animations, the local myocardial velocity changes were visualized as color changes on the cardiac surface during the cardiac cycle. Moreover, the magnitude and direction of motion for individual segments of myocardium could be displayed. These results suggest that the ability to encode quantitative functional information on dynamic cardiac anatomy enhances the diagnostic value of 4D images of the heart. Myocardial mechanics quantified this way adds a new dimension to the analysis of cardiac functional disease, including diastolic filling deficits and/or disturbances in regional electrophysiology and contraction patterns. !17
机译:摘要:区域性心脏运动的定量评估对于更准确地诊断心脏病和/或心脏不规则症具有重要的潜力。可以从医学成像序列研究局部心脏运动。使用功能参数映射,可以将心动周期中的局部心肌运动颜色映射到可变形的心脏模型上,以获得对心肌结构与功能关系的更好了解。在这项研究中,在整个一个心动周期的15个时间点从动态空间重构器获得了3D重构。从3D图像为心动周期的每个时间点创建可变形模型。从这些多边形模型,对于连续的时间间隔,计算代表心肌单位的每个顶点的区域偏移和速度。通过模型动画和/或特殊格式的静态图像可以直观地看到计算结果。使用颜色映射显示区域最大速度和心肌在整个心动周期中的偏移时间点。以类似的方式显示区域最大速度和最大偏移的绝对值。使用动画,在心动周期期间,局部心肌速度的变化可视为心脏表面的颜色变化。此外,可以显示心肌各个节段的运动幅度和方向。这些结果表明,在动态心脏解剖结构上编码定量功能信息的能力增强了心脏4D图像的诊断价值。以这种方式量化的心肌力学为心脏功能性疾病的分析增加了新的维度,包括舒张期充盈不足和/或局部电生理和收缩模式的紊乱。 !17

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