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锥形束CT图像引导放射治疗中因不正确的蝴蝶结滤波器导致的图像伪影。

Image artifacts caused by incorrect bowtie filters in cone-beam CT image-guided radiotherapy.

作者信息

Cao Yanan, Ma Tianjun, de Boer Steven F, Wang Iris Z

机构信息

Department of Radiation Medicine, Roswell Park Comprehensive Cancer Center, Buffalo, NY, USA.

Medical Physics Graduate Program, University at Buffalo, Buffalo, NY, USA.

出版信息

J Appl Clin Med Phys. 2020 Jul;21(7):153-159. doi: 10.1002/acm2.12888. Epub 2020 May 8.

Abstract

Certain models of cone beam computed tomography (CBCT) image-guided radiotherapy (IGRT) systems require manually placing the appropriate bowtie filter according to the relevant imaging protocol. Inadvertently using a wrong bowtie filter or no bowtie filter could cause unexpected image artifacts. In this work, CBCT image artifact patterns caused by different bowtie filter placement were evaluated. CBCT images of CT phantoms, that is, a Body Norm phantom, a Catphan® phantom and an anthropomorphic RANDO® phantom, were acquired at a Varian Trilogy® unit with an On-Board Imager® (OBI) system. Three image acquisition protocols were evaluated. For Standard Head protocol, half-fan bowtie and no bowtie filter were studied for comparison with the correct full-fan bowtie acquisition. For Pelvis and Low-Dose Thorax protocols, full-fan bowtie and no bowtie were studied for comparison with the correct half-fan bowtie acquisition. In addition, the possibility of reversed direction half-fan bowtie was also discussed. All possible scenarios of bowtie filter misplacement caused distinct artifacts regardless of protocols. These artifact patterns are different from the characteristic crescent artifact when correct bowtie filter was placed. Based on the artifact patterns described in this study we recommend reviewing image artifacts at time of image acquisition. If unexpected artifacts appear in the CBCT images, one should verify the correct placement of the bowtie filter and retake the image if necessary. However, it should also be stressed that using a wrong bowtie filter or forgetting to place the bowtie filter can cause increased patient dose. It is always a good practice to verify the bowtie filter placement before acquiring CBCT images for image-guided radiotherapy.

摘要

某些型号的锥形束计算机断层扫描(CBCT)图像引导放射治疗(IGRT)系统需要根据相关成像协议手动放置合适的蝴蝶结滤线器。不小心使用错误的蝴蝶结滤线器或不使用蝴蝶结滤线器可能会导致意外的图像伪影。在这项工作中,评估了由不同蝴蝶结滤线器放置引起的CBCT图像伪影模式。在配备机载成像仪(OBI)系统的瓦里安Trilogy®放疗设备上采集了CT体模(即体部标准模体、Catphan®模体和仿真人体RANDO®模体)的CBCT图像。评估了三种图像采集协议。对于标准头部协议,研究了半扇形蝴蝶结滤线器和不使用蝴蝶结滤线器的情况,以便与正确的全扇形蝴蝶结滤线器采集进行比较。对于骨盆和低剂量胸部协议,研究了全扇形蝴蝶结滤线器和不使用蝴蝶结滤线器的情况,以便与正确的半扇形蝴蝶结滤线器采集进行比较。此外,还讨论了半扇形蝴蝶结滤线器反向放置的可能性。无论采用何种协议,蝴蝶结滤线器放置错误的所有可能情况都会导致明显的伪影。这些伪影模式与正确放置蝴蝶结滤线器时的特征性新月形伪影不同。基于本研究中描述的伪影模式,我们建议在图像采集时检查图像伪影。如果CBCT图像中出现意外伪影,应检查蝴蝶结滤线器的正确放置情况,并在必要时重新采集图像。然而,还应强调的是,使用错误的蝴蝶结滤线器或忘记放置蝴蝶结滤线器会导致患者剂量增加。在为图像引导放射治疗采集CBCT图像之前,检查蝴蝶结滤线器的放置情况始终是一个好习惯。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d718/7386172/ade178d44caa/ACM2-21-153-g001.jpg

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