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首页> 外文期刊>Medical Physics >Variations in tumor size and position due to irregular breathing in 4D-CT: a simulation study.
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Variations in tumor size and position due to irregular breathing in 4D-CT: a simulation study.

机译:4D-CT中由于呼吸不规则导致的肿瘤大小和位置的变化:一项模拟研究。

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摘要

PURPOSE: To estimate the position and volume errors in 4D-CT caused by irregular breathing. METHODS: A virtual 4D-CT scanner was designed to reproduce axial mode scans with retrospective resorting. This virtual scanner creates an artificial spherical tumor based on the specifications of the user, and recreates images that might be produced by a 4D-CT scanner using a patient breathing waveform. 155 respiratory waveforms of patients were used to test the variability of 4D-CT scans. Each breathing waveform was normalized and scaled to 1, 2, and 3 cm peak-to-peak motion, and artificial tumors with 2 and 4 cm radius were simulated for each scaled waveform. The center of mass and volume of resorted 4D-CT images were calculated and compared to the expected values of center of mass and volume for the artificial tumor. Intrasubject variability was investigated by running the virtual scanner over different subintervals of each patient's breathing waveform. RESULTS: The average error in the center of mass location of an artificial tumor was less than 2 mm standard deviation for 2 cm motion. The corresponding average error in volume was less than 4%. In the worst-case scenarios, a center of mass error of 1.0 cm standard deviation and volume errors of 30%-60% at inhale were found. Systematic errors were observed in a subset of patients due to irregular breathing, and these errors were more pronounced when the tumor volume is smaller. CONCLUSIONS: Irregular breathing during 4D-CT simulation causes systematic errors in volume and center of mass measurements. These errors are small but depend on the tumor size, motion amplitude, and degree of breathing irregularity.
机译:目的:评估由不规则呼吸引起的4D-CT中的位置和体积误差。方法:设计了虚拟4D-CT扫描仪,以追溯方式重现轴向模式扫描。该虚拟扫描仪会根据用户的规格创建一个人造球形肿瘤,并使用患者的呼吸波形重新创建4D-CT扫描仪可能生成的图像。使用155个患者的呼吸波形来测试4D-CT扫描的变异性。将每个呼吸波形归一化并缩放为1、2和3 cm峰到峰运动,并为每个缩放波形模拟半径为2和4 cm的人造肿瘤。计算了4D-CT图像的质量和体积中心,并将其与人造肿瘤的质量和体积中心的预期值进行比较。通过在每个患者的呼吸波形的不同子间隔上运行虚拟扫描仪来研究受试者内部的变异性。结果:对于2 cm运动,人造肿瘤质心位置的平均误差小于2 mm标准偏差。相应的体积平均误差小于4%。在最坏的情况下,发现吸气时质心误差为1.0厘米标准偏差,体积误差为30%-60%。由于呼吸不规则,在一部分患者中观察到系统性错误,当肿瘤体积较小时,这些错误更加明显。结论:4D-CT模拟过程中不规则的呼吸会导致体积和质心测量的系统误差。这些误差很小,但取决于肿瘤的大小,运动幅度和呼吸不规则程度。

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