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首页> 外文期刊>Physics in medicine and biology. >Dose perturbations and image artifacts caused by carbon-coated ceramic and stainless steel fiducials used in proton therapy for prostate cancer.
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Dose perturbations and image artifacts caused by carbon-coated ceramic and stainless steel fiducials used in proton therapy for prostate cancer.

机译:由用于前列腺癌的质子治疗的碳涂层陶瓷和不锈钢基准所引起的剂量扰动和图像伪影。

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摘要

Image-guided radiation therapy using implanted fiducial markers is a common solution for prostate localization to improve targeting accuracy. However, fiducials that are typically used for conventional photon radiotherapy cause large dose perturbations in patients who receive proton radiotherapy. A proposed solution has been to use fiducials of lower atomic number (Z) materials to minimize this effect in tissue, but the effects of these fiducials on dose distributions have not been quantified. The objective of this study was to analyze the magnitude of the dose perturbations caused by select lower-Z fiducials (a carbon-coated zirconium dioxide fiducial and a plastic-coated stainless steel fiducial) and compare them to perturbations caused by conventional gold fiducials. Sets of phantoms were used to assess select components of the effects on dose. First, the fiducials were assessed for radiographic visibility using both conventional computed tomography (CT) and an on-board kilovoltage imaging device at our proton therapy center. CT streak artifacts from the fiducials were also measured in a separate phantom. Second, dose perturbations were measured downstream of the fiducials using radiochromic film. The magnitude of dose perturbation was characterized as a function of marker material, implantation depth and orientation with respect to the beam axis. The radiographic visibility of the markers was deemed to be acceptable for clinical use. The dose measurements showed that the perpendicularly oriented zirconium dioxide and stainless steel fiducials located near the center of modulation of the proton beam perturbed the dose by less than 10%, but that the same fiducials in a parallel orientation near the end of the range of the beam could perturb the dose by as much as 38%. This suggests that carbon-coated and stainless steel fiducials could be used in proton therapy if they are located far from the end of the range of the beam and if they are oriented perpendicular to the beam axis.
机译:使用植入的基准标记的图像引导放射疗法是前列腺定位以提高靶向准确性的常见解决方案。但是,通常用于常规光子放射治疗的基准会在接受质子放射治疗的患者中引起大剂量干扰。提出的解决方案是使用较低原子序数(Z)材料的基准来最小化组织中的这种影响,但是尚未对这些基准对剂量分布的影响进行量化。这项研究的目的是分析由选定的低Z基准点(碳涂层的二氧化锆基准点和塑料涂层的不锈钢基准点)引起的剂量扰动的大小,并将它们与常规金基准点引起的扰动进行比较。使用幻像组来评估影响剂量的选择成分。首先,使用我们的质子治疗中心的常规计算机断层扫描(CT)和机载千伏成像设备对基准点进行放射线可见性评估。来自基准点的CT条纹伪影也在单独的幻像中进行了测量。其次,使用放射致变色胶片在基准点的下游测量剂量扰动。剂量扰动的大小取决于标记材料,植入深度和相对于射束轴的方向。标记物的放射线可见性被认为对于临床使用是可接受的。剂量测量结果表明,位于质子束调制中心附近的垂直取向的二氧化锆和不锈钢基准点对剂量的扰动小于10%,但是在水平方向接近范围的末端,相同的基准点在平行方向上受到干扰。光束可能会干扰剂量达38%。这表明如果碳涂层的基准点和不锈钢基准点离束的范围末端很远并且垂直于束轴,则可以用于质子治疗。

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