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首页> 外文期刊>Physics in medicine and biology. >Topology-guided deformable registration with local importance preservation for biomedical images
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Topology-guided deformable registration with local importance preservation for biomedical images

机译:拓扑引导可变形注册与生物医学图像的局部重要性保存

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The demons registration (DR) model is well recognized for its deformation capability. However, it might lead to misregistration due to erroneous diffusion direction when there are no overlaps between corresponding regions. We propose a novel registration energy function, introducing topology energy, and incorporating a local energy function into the DR in a progressive registration scheme, to address these shortcomings. The topology energy that is derived from the topological information of the images serves as a direction inference to guide diffusion transformation to retain the merits of DR. The local energy constrains the deformation disparity of neighbouring pixels to maintain important local texture and density features. The energy function is minimized in a progressive scheme steered by a topology tree graph and we refer to it as topology-guided deformable registration (TDR). We validated our TDR on 20 pairs of synthetic images with Gaussian noise, 20 phantom PET images with artificial deformations and 12 pairs of clinical PET-CT studies. We compared it to three methods: (1) free-form deformation registration method, (2) energy-based DR and (3) multi-resolution DR. The experimental results show that our TDR outperformed the other three methods in regard to structural correspondence and preservation of the local important information including texture and density, while retaining global correspondence.
机译:恶魔登记(DR)模型得到充分认可的变形能力。然而,当相应区域之间没有重叠时,它可能导致错误的扩散方向导致误解。我们提出了一种新的登记能量功能,引入拓扑能量,并将局部能量函数纳入普通登记方案中的DR,以解决这些缺点。从图像的拓扑信息导出的拓扑能量用作引导扩散变换的方向推断,以保留DR的优点。局部能量限制相邻像素的变形视差,以保持重要的局部纹理和密度特征。在拓扑树图引导的渐进方案中,能量函数最小化,并将其称为拓扑导向可变形注册(TDR)。我们通过高斯噪声的20对合成图像验证了我们的TDR,具有人为变形和12对临床PET-CT研究的20幻象宠物图像。我们将其与三种方法进行比较:(1)自由形式变形登记方法,(2)基于能量的DR和(3)多分辨率DR。实验结果表明,我们的TDR在结构通信和保护本地重要信息的情况下表现出其他三种方法,包括纹理和密度,同时保留全球对应。

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