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4D POSITRON EMISSION TOMOGRAPHY IMAGE RECONSTRUCTION BASED ON BIOMECHANICAL RESPIRATORY MOTION

机译:基于生物力学呼吸运动的4D正电子发射断层扫描图像重建

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Respiratory-induced organ motion is a technical challenge to nuclear imaging and to particle therapy dose calculations for lung cancer treatment in particular. Internal organ tissue displacements and deformations induced by breathing need to be taken into account when calculating Monte Carlo dose distributions or when performing tomographic reconstructions for PET imaging. This paper proposes a method to reconstruct PET activities over tetrahedral meshes which are deformed based on biomechanical patient specific model of the respiratory system to tackle the non reproductibility of the breathing. We also describe the adaptation of the popular List-Mode Maximum Likelihood Estimation (LM-MLEM) reconstruction algorithm to motion estimation model using the finite element method (FEM). Our simulations demonstrate the accuracy of the proposed 4D LM-MLEM reconstruction algorithm based on biomechanical model and its capability to correct motion artifacts due to the breathing.
机译:呼吸诱导的器官运动是对核成像的技术挑战和特别是肺癌治疗的颗粒治疗剂量计算。当计算蒙特卡洛剂量分布或对宠物成像进行断层切换时,需要考虑通过呼吸诱导的内器组织位移和变形。本文提出了一种在基于呼吸系统的生物力学患者特异性模型变形的四面体网眼上重建宠物活动的方法,以解决呼吸的不萎缩性。我们还使用有限元方法(FEM)描述了对流行列表模式最大似然估计(LM-MLEM)重建算法的运动估计模型。我们的模拟证明了基于生物力学模型的提出的4D LM-MLEM重建算法的准确性及其由于呼吸而纠正运动伪影的能力。

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