Direct reconstruction of enhanced signal in computed tomography perfusion

Bin Li, Qingwen Lyu, Jianhua Ma, Jing Wang
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Abstract

High imaging dose has been a concern in computed tomography perfusion (CTP) as repeated scans are performed at the same location of a patient. On the other hand, signal changes only occur at limited regions in CT acquired at different time points. In this work, we propose a new reconstruction strategy by effectively utilizing the initial phase high-quality CT to reconstruct the later phase CT acquired with a low-dose protocol. In the proposed strategy, initial high-quality CT is considered as a base image and enhanced signal (ES) is reconstructed directly by minimizing the penalized weighted least-square (PWLS) criterion. The proposed PWLS-ES strategy converts the conventional CT reconstruction into a sparse signal reconstruction problem. Digital and anthropomorphic phantom studies were performed to evaluate the performance of the proposed PWLS-ES strategy. Both phantom studies show that the proposed PWLS-ES method outperforms the standard iterative CT reconstruction algorithm based on the same PWLS criterion according to various quantitative metrics including root mean squared error (RMSE) and the universal quality index (UQI).
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计算机断层扫描灌注增强信号的直接重建
高成像剂量一直是计算机断层扫描灌注(CTP)的一个问题,因为在患者的同一位置进行重复扫描。另一方面,在不同时间点获取的CT中,信号变化只发生在有限的区域。在这项工作中,我们提出了一种新的重建策略,即有效地利用初始阶段高质量CT来重建以低剂量方案获得的后期CT。该策略将初始高质量CT作为基图像,通过最小化加权最小二乘(PWLS)准则直接重构增强信号。所提出的PWLS-ES策略将传统的CT重构问题转化为稀疏信号重构问题。进行了数字和拟人化幻影研究,以评估所提出的PWLS-ES策略的性能。两项幻像研究均表明,在均方根误差(RMSE)和通用质量指数(UQI)等量化指标上,所提出的PWLS- es方法优于基于相同PWLS标准的标准迭代CT重建算法。
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