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Fast and accurate tract unfolding based on stable volumetric image deformation

机译:基于稳定的体积图像变形的快速准确的道展

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This paper presents an improved method for virtually unfolding an organ and visualizing its entire luminal surface in only one view. Unfolded tract views can be very useful as they allow doctors to understand various kinds of information of the luminal surface intuitively, just like observing a pathological specimen. However, the previous method cannot correctly reproduce the luminal surface because elasticity for the organ walls is quite coarse defined. Thus, three improvements are proposed: (1) accurate elastic modeling using mass points and Kelvin-Voigt visco-elastic elements, (2) stable image deformation by the Newmark-β method, and (3) automatically directing organ walls to flat shapes by forces determined from their surface normals. Unfolded views generated by the proposed method from seventeen 3D CT image datasets are compared with those by the previous method, virtual endoscopic images, and pathological specimens. Several regions on the luminal surface, which could not be reproduced by the previous method, were accurately reproduced. Bending and concave parts of organ walls, which were difficult to unfold in the previous method, were satisfactorily flattened by introducing improved deformation processes. Computation time was reasonably reduced. Unfolded views of twelve cases were presented to doctors for surgical planning. The unfolded views generated by the proposed method were considered to have well reproduced all lesions as well as fold patterns observed in virtual endoscopic images.
机译:本文提出了一种改进的方法,用于实际上展开器官并仅在一个视图中可视化其整个腔表面。展开的道具观点可能非常有用,因为他们允许医生直观地理解腔表面的各种信息,就像观察到病理样本一样。然而,先前的方法无法正确地再现腔表面,因为器官壁的弹性非常粗糙。因此,提出了三种改进:(1)使用质量点和开尔文 - voigt粘弹性元件的精确弹性建模,(2)纽马克-β方法稳定的图像变形,(3)自动将器壁引导到平坦的形状力量从它们的表面法线决定。通过先前方法,虚拟内窥镜图像和病理标本的展开方法由第七个CT图像数据集产生的提出方法产生的展开视图。腔表面上的几个区域,可以精确地再现通过先前方法再现的腔表面。通过引入改进的变形过程,难以在先前的方法中难以展开的器官壁的弯曲和凹陷,这是通过引入改进的变形过程而令人满意地平坦化。计算时间合理减少。向医生提供了12个案例的展开意见,用于手术规划。所提出的方法产生的展开视图被认为是在虚拟内窥镜图像中观察到的所有病变以及在虚拟内窥镜图像中观察到的折叠模式。

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