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单源和双源锥形束计算机断层扫描的图像质量与吸收剂量比较

Image quality and absorbed dose comparison of single- and dual-source cone-beam computed tomography.

作者信息

Miura Hideharu, Ozawa Shuichi, Okazue Toshiya, Kawakubo Atsushi, Yamada Kiyoshi, Nagata Yasushi

机构信息

Hiroshima High-Precision Radiotherapy Cancer Center, Hiroshima, Japan.

Department of Radiation Oncology, Institute of Biomedical & Health Science, Hiroshima University, Hiroshima, Japan.

出版信息

J Appl Clin Med Phys. 2018 May;19(3):360-366. doi: 10.1002/acm2.12328. Epub 2018 Apr 17.

Abstract

PURPOSE

Dual-source cone-beam computed tomography (DCBCT) is currently available in the Vero4DRT image-guided radiotherapy system. We evaluated the image quality and absorbed dose for DCBCT and compared the values with those for single-source CBCT (SCBCT).

METHODS

Image uniformity, Hounsfield unit (HU) linearity, image contrast, and spatial resolution were evaluated using a Catphan phantom. The rotation angle for acquiring SCBCT and DCBCT images is 215° and 115°, respectively. The image uniformity was calculated using measurements obtained at the center and four peripheral positions. The HUs of seven materials inserted into the phantom were measured to evaluate HU linearity and image contrast. The Catphan phantom was scanned with a conventional CT scanner to measure the reference HU for each material. The spatial resolution was calculated using high-resolution pattern modules. Image quality was analyzed using ImageJ software ver. 1.49. The absorbed dose was measured using a 0.6-cm ionization chamber with a 16-cm-diameter cylindrical phantom, at the center and four peripheral positions of the phantom, and calculated using weighted cone-beam CT dose index (CBCTDI ).

RESULTS

Compared with that of SCBCT, the image uniformity of DCBCT was slightly reduced. A strong linear correlation existed between the measured HU for DCBCT and the reference HU, although the linear regression slope was different from that of the reference HU. DCBCT had poorer image contrast than did SCBCT, particularly with a high-contrast material. There was no significant difference between the spatial resolutions of SCBCT and DCBCT. The absorbed dose for DCBCT was higher than that for SCBCT, because in DCBCT, the two x-ray projections overlap between 45° and 70°.

CONCLUSIONS

We found that the image quality was poorer and the absorbed dose was higher for DCBCT than for SCBCT in the Vero4DRT.

摘要

目的

双源锥形束计算机断层扫描(DCBCT)目前可用于Vero4DRT图像引导放射治疗系统。我们评估了DCBCT的图像质量和吸收剂量,并将这些值与单源CBCT(SCBCT)的值进行比较。

方法

使用Catphan体模评估图像均匀性、亨氏单位(HU)线性、图像对比度和空间分辨率。获取SCBCT和DCBCT图像的旋转角度分别为215°和115°。使用在中心和四个周边位置获得的测量值计算图像均匀性。测量插入体模的七种材料的HU,以评估HU线性和图像对比度。使用传统CT扫描仪扫描Catphan体模,以测量每种材料的参考HU。使用高分辨率图案模块计算空间分辨率。使用ImageJ软件版本1.49分析图像质量。使用直径为16 cm的圆柱形体模,在体模的中心和四个周边位置,用0.6 cm的电离室测量吸收剂量,并使用加权锥形束CT剂量指数(CBCTDI)进行计算。

结果

与SCBCT相比,DCBCT的图像均匀性略有降低。尽管DCBCT的线性回归斜率与参考HU不同,但测量的DCBCT的HU与参考HU之间存在很强的线性相关性。DCBCT的图像对比度比SCBCT差,尤其是对于高对比度材料。SCBCT和DCBCT的空间分辨率之间没有显著差异。DCBCT的吸收剂量高于SCBCT,因为在DCBCT中,两个X射线投影在45°至70°之间重叠。

结论

我们发现在Vero4DRT中,DCBCT的图像质量比SCBCT差,吸收剂量比SCBCT高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4994/5978565/7a5e7800af8e/ACM2-19-360-g001.jpg

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