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Functional Parameter Estimation Based on Deformable Cardiac Model

机译:基于可变形心脏模型的功能参数估计

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Many cardiac diseases are strongly correlated to cardiac dynamic mechanics and its functional parameters. Understanding the heartpsilas mechanics is crucial for clinical investigation, diagnosis and patient care. This paper presents a novel point distribution model based approach to analyze the left ventricle motion, and defines a new parameter named movement extents of myocardium to describe the local motion. The algorithm discovers the motion path of key point in a cardiac cycle via spline interpolation, and then the results were used to estimate the velocity and acceleration of key point. By comparison, we find that the results closely fit the physical motion mechanism of the heart. Meanwhile, by comparing these parameters with those of adjacent area, the normal and pathological heart will be distinguished. More important is that the abnormal ones in early stage of disease can be tracked from complex deformation of the cardiac muscles.
机译:许多心脏病与心动力学和功能参数强烈相关。了解Heastpsilas Mechanics对临床调查,诊断和患者护理至关重要。本文提出了一种基于点分布模型的分析左心室运动的方法,并定义了一种名为MocoCarium的新参数以描述本地运动。该算法通过样条插值发现心周期中的关键点的运动路径,然后使用结果来估计关键点的速度和加速度。相比之下,我们发现结果紧密地符合心脏的物理运动机制。同时,通过将这些参数与邻近区域的那些进行比较,将区分正常和病理心脏。更重要的是,可以从心肌的复杂变形跟踪疾病早期阶段的异常。

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