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Shape-based tracking of naturally occurring annuli in image sequences

机译:基于形状的图像序列中自然出现的环的跟踪

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The problem of tracking and quantifying the nonrigid nonuniform motion of naturally occurring annuli from image sequences is addressed. Motion computation is performed in two different manners, i.e., shape adherence with second order difference smoothing, and shape adherence with smoothing based on strain energy minimization. Results are shown for two typical applications, i.e., motion of the left ventricular wall of the heart over an entire cardiac cycle as derived from magnetic resonance images, and extension of neuronal growth cone membranes (lamel-lipodia) from light microscopy images.
机译:寻址跟踪和量化从图像序列自然呈载荷的非粗态非均匀运动的问题。运动计算以两种不同的方式执行,即用二阶差异平滑的形状粘附,以及基于应变能量最小化的平滑形状粘附。结果显示为两个典型的应用,即心脏的左心室壁的运动,在源自磁共振图像中的整个心动周期,以及从光学显微镜图像延伸神经元生长锥膜(层状脂质)。

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