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Technical Note: Evaluation of kV CBCT enhancement using a liver‐specific contrast agent for stereotactic body radiation therapy image guidance

机译:技术说明:使用肝脏特异性造影剂进行静态体放射治疗图像指导评估KV CBCT增强

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摘要

Purpose To evaluate possible use for cone‐beam computed tomography (CBCT) guidance, this phantom study evaluated the contrast enhancement provided by Gadoxetate Disodium (Primovist ? CAN/EU, or Eovist ? USA, Bayer Healthcare, Leverkusen, Germany), a contrast agent that is taken up selectively by liver cells and is retained for up to an hour. Image quality from CBCT was benchmarked against helical fan‐beam computed tomography for two phantom geometries. Methods and Materials Concentrations were diluted to 0.0125–0.1 mmol per kilogram of body weight (mmol/kg) corresponding to expected physiological concentrations in the liver. Kilovoltage CBCT imaging parameters of x‐ray tube potential, current, and filtration were investigated using clinically available options on a TrueBeam STx linear accelerator CBCT platform. Two phantoms were created, a cylindrical idealized imaging geometry and an ellipsoidal more realistic abdominal geometry. All parameters were optimized according to the contrast‐to‐noise ratio (CNR) image quality metric, as a function of concentration, following the Rose criterion for CNR. Results Acceptable CNR was defined as greater than or equal to three, in accordance with the Rose criterion for CNR. These were found in a range of expected liver concentrations of 0.025–0.1 mmol/kg for a tube potential of 100 kVp, half‐fan bowtie filtration and tube currents giving exposures between 2025 and 5085 mAs. Linear correlations were found for all CNR as a function of concentration, in agreement with the literature. Conclusion Based on this phantom study, with appropriate selection of imaging protocol, Gadoxetate Disodium may provide useful liver CBCT enhancement at physiologically achievable liver concentrations.
机译:为了评估锥形光束计算断层扫描(CBCT)指导的可能使用,这种幻影研究评估了乙酰甲酸酯解数提供的对比增强(Primovist?Can / Eu,或常务人士?美国,拜耳医疗保健,leverkusen,德国),造影剂肝细胞选择性地吸收,保留长达一个小时。来自CBCT的图像质量与螺旋扇束计算机断层扫描有两个幻影几何。将方法和材料浓度稀释至每千克体重(mmol / kg)的0.0125-0.1mmol,对应于肝脏中预期的生理浓度。在TrueBeam STX线性加速器CBCT平台上使用临床可用选项研究了X射线管电位,电流和过滤的千伏电阻成像参数。产生两个幽灵,圆柱形理想成像几何形状和椭圆形更现实的腹部几何形状。在CNR的玫瑰标准之后,根据对比度 - 噪声比(CNR)图像质量指标,根据浓度的函数进行优化。结果可接受的CNR根据CNR的玫瑰标准定义为大于或等于三。这些预期肝脏浓度为0.025-0.1mmol / kg的预期肝脏浓度,用于100 kVp的管电位,半风扇蝴蝶结过滤和管电流,可在2025和5085 mas之间曝光。对所有CNR的线性相关性作为集中的函数,同时与文献一致。 Conclusion Based on this phantom study, with appropriate selection of imaging protocol, Gadoxetate Disodium may provide useful liver CBCT enhancement at physiologically achievable liver concentrations.

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  • 来源
    《Medical Physics》 |2019年第3期|共7页
  • 作者单位

    Department of Physics and Atmospheric ScienceDalhousie UniversityHalifax B3H 4R2 Canada;

    Department of Radiation OncologyUniversity of Texas Southwestern Medical CenterDallas TX 75390 USA;

    Department of Physics and Atmospheric ScienceDalhousie UniversityHalifax B3H 4R2 Canada;

    Department of Radiation OncologyDalhousie UniversityHalifax B3H 4R2 Canada;

    Department of Physics and Atmospheric ScienceDalhousie UniversityHalifax B3H 4R2 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

    Cone‐beam CT; Gadoxetate Disodium; Liver SBRT;

    机译:锥梁CT;乙醛酸盐二钠;肝脏SBRT;

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