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首页> 外文期刊>Journal of applied clinical medical physics / >Assessment of longitudinal beam property and contrast uniformity for 256‐ and 320‐row area detector computed tomography scanners in the 160‐mm nonhelical volume‐acquisition mode
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Assessment of longitudinal beam property and contrast uniformity for 256‐ and 320‐row area detector computed tomography scanners in the 160‐mm nonhelical volume‐acquisition mode

机译:在160毫米非螺旋体积采集模式下评估256和320行面积检测器计算机断层扫描仪的纵向光束特性和对比度均匀性

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Background Because the x‐ray property of patient longitudinal axis in area detector computed tomography (ADCT) depends on a heel effect, radiation dose and beam quality are not uniform along the long axis of the patient. Objective This study aimed to measure the longitudinal beam properties and contrast uniformity of ADCT scanners in the 160‐mm nonhelical volume‐acquisition (NVA) mode and provide useful datasets for the radiation dose reduction in ADCT examinations. Materials and Methods Two different types of ADCT scanners were used in this study. To assess the heel effect in 256‐ and 320‐row ADCT scanners, we measured dose profile, half‐value layer, and iodine contrast uniformity along longitudinal beam direction. Results The maximum effective energy difference within a 160‐mm x‐ray beam is approximately 4?keV. Maximum radiation dose on the anode side of the x‐ray tube showed approximately 40%–45% reduction compared with that on the isocenter position; the heel effect properties longitudinally differed throughout the x‐ray beam, and the decrease in the radiation dose in 256‐ and 320‐row ADCT scanners was observed on the patient table side and gantry side respectively. The CT numbers of iodinated solutions for 256‐row ADCT scanner were independent of the heel effect; nevertheless, the CT numbers of 320‐row ADCT scanner tended to increase on the patient table (cathode) side. Conclusion This study reveals that the radiation dose on the anode side of the x‐ray tube shows approximately 40%–45% reduction compared with that on the isocenter position, and the heel effect properties for 256‐ and 320‐row ADCT scanners longitudinally differ throughout the x‐ray beam. The x‐ray tube for individual ADCT scanners is mounted in an opposite direction along the long axis of the patient.
机译:背景技术由于区域检测器计算机断层扫描(ADCT)中患者纵轴的X射线属性取决于脚跟效应,因此沿患者长轴的辐射剂量和光束质量不一致。目的这项研究旨在在160毫米非螺旋体积采集(NVA)模式下测量ADCT扫描仪的纵向光束特性和对比度均匀性,并为降低ADCT检查中的辐射剂量提供有用的数据集。材料和方法本研究使用两种不同类型的ADCT扫描仪。为了评估256行和320行ADCT扫描仪的后跟效应,我们测量了沿纵向光束方向的剂量分布,半值层和碘对比均匀性。结果160 mm X射线束内的最大有效能量差约为4?keV。与等中心位置相比,X射线管阳极侧的最大辐射剂量减少了约40%–45%。整个X射线束的后跟​​效应特性在纵向上有所不同,并且分别在患者台侧和龙门架侧观察到256行和320行ADCT扫描仪的辐射剂量降低。 256行ADCT扫描仪的含碘溶液的CT数与跟效应无关。但是,在患者床(阴极)一侧,320行ADCT扫描仪的CT数趋于增加。结论本研究表明,与等中心位置相比,X射线管阳极侧的辐射剂量减少了约40%–45%,并且256和320行ADCT扫描仪的后跟效应特性在纵向上有所不同在整个X射线束中各个ADCT扫描仪的X射线管沿患者的长轴以相反的方向安装。

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