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Local Contractive Registration for Quantification of Tissue Shrinkage in Assessment of Microwave Ablation

机译:用于评估微波消融的组织收缩量化的局部收缩登记

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Microwave ablation is an effective minimally invasive surgery for the treatment of liver cancer. The safety margin assessment is implemented by mapping the coagulation in the postoperative image to the tumor in the preoperative image. However, an accurate assessment is a challenging task because the tissue shrinks caused by dehydration during microwave ablation. This paper proposes a fast automatic assessment method to compensate for the underestimation of the coagulation caused by the tissue shrinks and precisely quantify the tumor coverage. The proposed method is implemented on GPU including two main steps: (1) a local contractive nonrigid registration for registering the liver parenchyma around the coagulation, and (2) the fast Fourier transform-based Helmholtz-Hodge decomposition for quantifying the location of the shrinkage center and the volume of the original coagulation. The method was quantificationally evaluated on 50 groups of synthetic datasets and 9 groups of clinical MR datasets. Compared with five state-of-the-art methods, the lowest distance to the true deformation field (1.56 ±0.74 mm) and the highest precision of safety margin (88.89%) are obtained. The mean computation time is 111 ± 13s. Results show that the proposed method efficiently improves the accuracy of the safety margin assessment and is thus a promising assessment tool for the microwave ablation.
机译:微波消融是一种有效的微创手术,用于治疗肝癌。通过将术后图像中的凝血映射到术前图像中的肿瘤来实施安全保证金评估。然而,准确的评估是一个具有挑战性的任务,因为微波消融期间脱水引起的组织收缩。本文提出了一种快速的自动评估方法,以补偿由组织缩小的凝血的低估并精确量化肿瘤覆盖率。该方法在GPU上实施,包括两个主要步骤:(1)用于在凝血周围注册肝实质的局部收缩非肝硬化注册,(2)基于快速的傅里叶变换的Helmholtz-Hodge分解,用于量化收缩的位置中心和原始凝血的体积。该方法定量评估50组合成数据集和9组临床MR Datasets。与五种最先进的方法相比,与真实变形场(1.56±0.74 mm)的最低距离和安全裕度的最高精度(88.89%)。平均计算时间为111±13s。结果表明,该方法有效地提高了安全保证金评估的准确性,因此是微波消融的有希望的评估工具。

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