Wei Jikun, Sandison George A, Hsi Wen-Chien, Ringor Michael, Lu Xiaoyi
School of Health Sciences, Purdue University, 550 Stadium Mall Drive, West Lafayette, IN 47907, USA.
Phys Med Biol. 2006 Oct 21;51(20):5183-97. doi: 10.1088/0031-9155/51/20/007. Epub 2006 Sep 27.
Accurate dose calculation is essential to precision radiation treatment planning and this accuracy depends upon anatomic and tissue electron density information. Modern treatment planning inhomogeneity corrections use x-ray CT images and calibrated scales of tissue CT number to electron density to provide this information. The presence of metal in the volume scanned by an x-ray CT scanner causes metal induced image artefacts that influence CT numbers and thereby introduce errors in the radiation dose distribution calculated. This paper investigates the dosimetric improvement achieved by a previously proposed x-ray CT metal artefact suppression technique when the suppressed images of a patient with bilateral hip prostheses are used in commercial treatment planning systems for proton, electron or photon therapies. For all these beam types, this clinical image and treatment planning study reveals that the target may be severely underdosed if a metal artefact-contaminated image is used for dose calculations instead of the artefact suppressed one. Of the three beam types studied, the metal artefact suppression is most important for proton therapy dose calculations, intermediate for electron therapy and least important for x-ray therapy but still significant. The study of a water phantom having a metal rod simulating a hip prosthesis indicates that CT numbers generated after image processing for metal artefact suppression are accurate and thus dose calculations based on the metal artefact suppressed images will be of high fidelity.
精确的剂量计算对于精确放射治疗计划至关重要,而这种准确性取决于解剖学和组织电子密度信息。现代治疗计划中的不均匀性校正使用X射线CT图像以及组织CT值到电子密度的校准量表来提供此信息。X射线CT扫描仪扫描的体积中存在金属会导致金属诱导的图像伪影,这些伪影会影响CT值,从而在计算的辐射剂量分布中引入误差。本文研究了先前提出的X射线CT金属伪影抑制技术在双侧髋关节假体患者的抑制图像用于质子、电子或光子治疗的商业治疗计划系统时所实现的剂量学改善。对于所有这些束流类型,这项临床图像和治疗计划研究表明,如果使用受金属伪影污染的图像而不是抑制伪影的图像进行剂量计算,靶区可能会严重剂量不足。在所研究的三种束流类型中,金属伪影抑制对于质子治疗剂量计算最为重要,对电子治疗次之,对X射线治疗最不重要,但仍然很显著。对具有模拟髋关节假体金属棒的水模体的研究表明,在对金属伪影进行图像处理后生成的CT值是准确的,因此基于抑制金属伪影的图像进行的剂量计算将具有高保真度。