首页> 外文期刊>Iranian journal of radiation research : >Monte Carlo radiography simulation for assessment of absorbed radiation dose in femur bone marrow during X-ray radiography for constant mAs and AEC techniques
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Monte Carlo radiography simulation for assessment of absorbed radiation dose in femur bone marrow during X-ray radiography for constant mAs and AEC techniques

机译:蒙特卡罗射线照相模拟,用于评估恒定mAs和AEC技术在X射线照相术期间股骨骨髓吸收的辐射剂量

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Background: The purpose of this study was to find the accurate absorbed dose in the femur bone marrow during the X-ray radiography for constant mAs and AEC techniques. Materials and Methods: The DOSXYZnrc was used to simulate radiation doses in two human femurs during diagnostic radiography. EGSnrc phantoms produced from actual CT images of human femurs were modified by adding seven micrometre layers of marrow tissues. The X-ray machine was simulated using BEAMnrc using 30 billions particles for different combinations of energies and filters. The resultant data was used to in DOSXYSnrc simulations to evaluate the absorbed dose in the human femur. Results: In the head of the femur, for 2.5 mm aluminium filtered 85 kVp X-ray set at 50 mAs, the absorbed dose in the marrow was found to be 1.360 mGy, ~ 36% of the absorbed dose in the cortical bone. It was also found that for the constant mAs technique, the radiation dose in the marrow over the studied energies and filter combination, ranges from 0.356 mGy to 2.403 mGy, with higher dose recorded for higher kVp settings. However, for the AEC technique, the dose is lower for higher kVp settings. For a typical setting, viz. 85 kVp, 6 mAs at 48 inches SID, the bone marrow absorbed dose was found to be 0.186 mGy for the constant mAs technique and 0.0308 mGy for the AEC technique. Conclusion: It was confirmed that the radiation dose is lower when the AEC exposure technique is used as opposed to using constant mAs technique. For the AEC technique, typical dose to the bone marrow was found to be ~ 0.05 mGy, decreasing with both kVp settings and beam filtration. For constant mAs technique, the typical dose to bone marrow is found to be higher, ~ 0.2 mGy, decreasing with the amount of filtration used but increasing with the kVp setting.
机译:背景:本研究的目的是在恒定mAs和AEC技术的X射线放射照相过程中,找出股骨骨髓中的准确吸收剂量。材料和方法:DOSXYZnrc用于在诊断放射线照相过程中模拟两个人股骨的放射剂量。从人类股骨的实际CT图像产生的EGSnrc幻像通过添加七个微米的骨髓组织层进行了修改。使用BEAMnrc模拟了X射线机,其中使用了300亿个粒子,用于能量和滤波器的不同组合。所得数据用于DOSXYSnrc模拟,以评估人股骨的吸收剂量。结果:在股骨头上,对于2.5 mm铝过滤的85 kVp X射线设置为50 mAs,其在骨髓中的吸收剂量为1.360 mGy,约占皮质骨吸收剂量的36%。还发现,对于恒定mAs技术,在研究的能量和滤波器组合上,骨髓中的辐射剂量范围为0.356 mGy至2.403 mGy,对于更高的kVp设置,记录的剂量更高。但是,对于AEC技术,对于较高的kVp设置,剂量较低。对于典型设置,即。 85 kVp,在48英寸SID时为6 mAs,对于恒定mAs技术,骨髓吸收剂量为0.186 mGy,对于AEC技术,为0.0308 mGy。结论:可以肯定的是,与使用恒定mAs技术相比,使用AEC曝光技术可以降低辐射剂量。对于AEC技术,发现对骨髓的典型剂量为〜0.05 mGy,随着kVp设置和射束过滤而降低。对于恒定mAs技术,发现对骨髓的典型剂量较高,约为0.2 mGy,随所用过滤量的增加而降低,但随kVp设置的增加而增加。

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