射线源平移扫描 CT 解析重建算法研究
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TP391 TH74

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国家自然科学基金(62171067)项目资助


Analytical reconstruction algorithm of source translation based CT
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    摘要:

    微焦 CT 通过圆周扫描可对处于视场内的物体实现高分辨力成像。 针对超出视场的大物体 CT 成像,一种射线源平移 扫描 CT(STCT)被提出。 STCT 采用射线源直线运动的方式采集投影数据,具有结构简单、应用灵活等特点。 由于在 STCT 扫描 过程中,每个位置的射线只能照射到部分物体,投影数据存在截断。 为了提高重建效率和处理截断投影数据,提出了基于数据 重组的滤波反投影重建算法( rFBP),该算法基于 STCT 扫描特性和 X 射线衰减性质,通过对置射线源采样点与探测器像元,将 截断投影数据重组为全局投影数据,并在此基础上推导了 rFBP 算法表达式。 仿真和实物实验结果验证了 rFBP 算法的有效性 与实用性,重建时间综合缩短至 SIRT 算法的 0. 6% 。 rFBP 算法能避免截断伪影,准确、高效地重建 STCT 图像。

    Abstract:

    The micro-computed tomography (micro-CT) can achieve high-resolution imaging for objects completely contained in the field of view (FOV) by circular scanning. For the CT imaging of large objects beyond the FOV, the source translation based CT (STCT) is proposed, which collects data by moving the X-ray source along the straight trajectory. It has characteristics of simple structure and flexible application. But only part of the object can be illuminated at each source′s position during the STCT scanning, which causes the projection data truncated. For the enhancement of reconstruction efficiency and the processing of truncated projection data, the data rearrangement based filtered backprojection (rFBP) algorithm is proposed in this article. Based on STCT′s scanning characteristics and X-ray attenuation properties, this algorithm rearranges the truncated projection data into the global projection data by inverting the source sampling point and the detector unit, and the rFBP algorithm expression is deduced. Numerical simulations and practical experiments are performed. Results validate the effectiveness and practicability of the rFBP algorithm. The reconstruction time is reduced to 0. 6% of that of SIRT algorithm. The rFBP algorithm could accurately and efficiently reconstruct images of STCT.

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李 雷,余海军,谭川东,段晓礁,刘丰林.射线源平移扫描 CT 解析重建算法研究[J].仪器仪表学报,2022,43(2):187-195

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  • 在线发布日期: 2023-02-06
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