Application of high-resolution CT local augmentation reconstruction to improve the accurate diagnosis of small pulmonary nodule structure

Xinhong Wang, Jian-zhong Sun, Tingting Hu, Wei-min Zhang
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Abstract

Objective To explore the accurate display method of the local structure of small CT nodules in lung. Methods Close the automatic radiation dose adjustment technique. Keep the thickness of the phantom was 2 mm, the interval between the phantom layers was 2 mm, the pitch was 1, and the reconstructed convoluted nucleus was B80s. Group A controlled the scanning matrix FOV to be 500 mm×500 mm, 400 mm×400 mm, 300 mm×300 mm, 200 mm×200 mm and 100 mm×100 mm, while group B controlled the scanning matrix FOV to be 500 mm×500 mm. Use these parameters to scan the catphan 500 phantom, a routine chest CT conditioned scanning quality control model. The original data raw data were used to reconstruct the FOV to be 400 mm×400 mm, 300 mm×300 mm, 200 mm×200 mm and 100 mm×100 mm under the scanning FOV to be 500 mm×500 mm. All other conditions are consistent. Observe the high contrast resolution module of Catphan 500 phantom, and compare the line logarithms of two groups of images under different scanning FOV or different reconstruction FOV. Thirty-five patients with small pulmonary nodules from February 2018 to March 2018 of the Second Affiliated Hospital of Zhejiang University Medical College were retrospectively collected. The raw data were used to reconstruct the images. The FOV was 320 mm×320 mm in the conventional reconstruction group and 100 mm×100 mm in the local magnification reconstruction group. The subjective score data of the two groups were compared by using rank-sum test. Results When catphan 500 phantom was used, the number of lines in group A and group B increased gradually with the decreasing of FOV. The subjective score of local magnification reconstruction group (4.77±0.35) was higher than that of conventional reconstruction group (3.86±0.50) and the difference was statistically significant (Z=-5.763, P<0.05). Conclusion Local magnification and reconstruction of high-resolution CT images can achieve the same image quality as local magnification, local magnification and reconstruction of image quality is significantly better than simple image magnification. Key words: Tomography,X-ray computed; Radiation dosage; Imaging quality; Comparative study
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应用高分辨率CT局部增强重建提高肺小结节结构的准确诊断
目的探讨肺部CT小结节局部结构的准确显示方法。方法采用放射剂量自动调整技术。保持体模厚度为2mm,体模层间距为2mm,节距为1,重建的回旋核为B80s。A组将扫描矩阵FOV控制为500 mm×500 mm、400 mm×400 mm、300 mm×300 mm、200 mm×200 mm和100 mm×100 mm。在扫描视场为500 mm×500 mm的情况下,使用原始数据原始数据将视场重建为400 mm×400 mm、300 mm×300 mm、200 mm×200 mm和100 mm×100 mm。所有其他条件都是一致的。观察Catphan 500体模的高对比度分辨率模块,比较两组图像在不同扫描视场或不同重建视场下的线对数。回顾性收集浙江大学医学院第二附属医院2018年2月至2018年3月收治的35例肺部小结节患者。原始数据被用来重建图像。常规重建组的FOV为320 mm×320 mm,局部放大重建组为100 mm×100 mm。采用秩和检验对两组患者的主观得分数据进行比较。结果采用catphan 500体模时,A组和B组的线数随FOV的减小而逐渐增加。局部放大重建组的主观评分(4.77±0.35)高于常规重建组(3.86±0.50),差异有统计学意义(Z=5.763,P<0.05),局部放大和重建的图像质量明显优于简单的图像放大。关键词:体层摄影、X射线计算机;辐射剂量;成像质量;比较研究
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来源期刊
Zhonghua fang she xue za zhi Chinese journal of radiology
Zhonghua fang she xue za zhi Chinese journal of radiology Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
0.30
自引率
0.00%
发文量
10639
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