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Evaluation of the ΔV 4D CT ventilation calculation method using in vivo xenon CT ventilation data and comparison to other methods

机译:使用体内氙CT通风数据评估ΔV4D CT通风计算方法并与其他方法进行比较

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摘要

Ventilation distribution calculation using 4D CT has shown promising potential in several clinical applications. This study evaluated the direct geometric ventilation calculation method, namely the ΔV method, with xenon-enhanced CT (XeCT) ventilation data from four sheep, and compared it with two other published methods, the Jacobian and the Hounsfield unit (HU) methods. Spearman correlation coefficient (SCC) and Dice similarity coefficient (DSC) were used for the evaluation and comparison. The average SCC with one standard deviation was 0.44 ± 0.13 with a range between 0.29 and 0.61 between the XeCT and DLV ventilation distributions. The average DSC value for lower 30% ventilation volumes between the XeCT and ΔV ventilation distributions was 0.55 ± 0.07 with a range between 0.48 and 0.63. Ventilation difference introduced by deformable image registration errors improved with smoothing. In conclusion, ventilation distributions generated using ΔV-4D CT and deformable image registration are in reasonably agreement with the in vivo XeCT measured ventilation distribution.PACS number(s): 87.57.N-, 87.57.nj , 87.57.Q-, 87.85.Pq
机译:使用4D CT进行通风分布计算已显示出在一些临床应用中的潜力。本研究使用来自四只绵羊的氙气增强CT(XeCT)通风数据评估了直接几何通风计算方法,即ΔV方法,并将其与其他两种已发布的方法,即Jacobian方法和Hounsfield单位(HU)方法进行了比较。使用Spearman相关系数(SCC)和Dice相似系数(DSC)进行评估和比较。 XeCT和DLV通风分布之间的平均SCC为一个标准偏差,为0.44±0.13,范围在0.29和0.61之间。 XeCT和ΔV通风分布之间较低的30%通风量的平均DSC值为0.55±0.07,范围在0.48和0.63之间。由可变形图像配准误差引起的通气差异可通过平滑得到改善。总之,使用ΔV-4DCT和可变形图像配准生成的通气分布与体内XeCT测量的通气分布合理一致.PACS编号:87.57.N-,87.57.nj,87.57.Q-,87.85。 q

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