首页> 外文期刊>Physics in medicine and biology. >CALDose_X-a software tool for the assessment of organ and tissue absorbed doses, effective dose and cancer risks in diagnostic radiology.
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CALDose_X-a software tool for the assessment of organ and tissue absorbed doses, effective dose and cancer risks in diagnostic radiology.

机译:CALDose_X-一种用于评估放射诊断中器官和组织吸收剂量,有效剂量和癌症风险的软件工具。

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摘要

CALDose_X is a software tool that provides the possibility of calculating incident air kerma (INAK) and entrance surface air kerma (ESAK), two important quantities used in x-ray diagnosis, based on the output of the x-ray equipment. Additionally, the software uses conversion coefficients (CCs) to assess the absorbed dose to organs and tissues of the human body, the effective dose as well as the patient's cancer risk for radiographic examinations. The CCs, ratios between organ or tissue absorbed doses and measurable quantities, have been calculated with the FAX06 and the MAX06 phantoms for 34 projections of 10 commonly performed x-ray examinations, for 40 combinations of tube potential and filtration ranging from 50 to 120 kVcp and from 2.0 to 5.0 mm aluminum, respectively, for various field positions, for 29 selected organs and tissues and simultaneously for the measurable quantities, INAK, ESAK and kerma area product (KAP). Based on the x-ray irradiation parameters defined by the user, CALDose_X showsimages of the phantom together with the position of the x-ray beam. By using true to nature voxel phantoms, CALDose_X improves earlier software tools, which were mostly based on mathematical MIRD5-type phantoms, by using a less representative human anatomy.
机译:CALDose_X是一种软件工具,可根据X射线设备的输出来计算入射空气比释动能(INAK)和入射表面空气比释动能(ESAK),这是X射线诊断中使用的两个重要量。此外,该软件使用转换系数(CC)评估人体器官和组织的吸收剂量,有效剂量以及放射线检查患者的癌症风险。使用FAX06和MAX06体模计算了CC值,即器官或组织吸收剂量与可测量量之间的比率,对10个常用X射线检查的34个投影进行了FAX06和MAX06幻像计算,对40种组合的管电势和过滤范围为50至120 kVcp铝和2.0到5.0毫米的铝,分别用于各种田间位置,29种选定的器官和组织,同时用于可测量的INAK,ESAK和比释动植物面积产品(KAP)。根据用户定义的X射线照射参数,CALDose_X会显示体模的图像以及X射线束的位置。通过使用真实的体素体模,CALDose_X通过使用代表性较低的人体解剖学改进了早期的软件工具,这些软件工具主要基于数学的MIRD5型体模。

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