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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Quantification of radiation and imaging isocenter coincidence of a multi-room PBS proton therapy system
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Quantification of radiation and imaging isocenter coincidence of a multi-room PBS proton therapy system

机译:量化多室PBS质子治疗系统的辐射和成像的定量

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摘要

Alignment between the radiation isocenter and imaging isocenter is critical to ensure accurate proton dose deposition in the patient. The purpose of the current study is to perform a comprehensive evaluation of the coincidence (planar kV X-rays vs. pencil proton beam) among three, beam-matched pencil beam scanning (PBS) gantries of a ProteusPLUS proton therapy system. For proton radiation isocenter measurement, a cone-shaped scintillator detector, XRV-124, was utilized. To test the impact of gantry angle on the beam coincidence, measurements at 12 different gantry angles were performed in the study. Additionally, the energy dependency on beam coincidence was investigated by acquiring measurements for a total of 63 different energies ranging from 70-225 MeV at increments of 2.5 MeV. The measurements were performed in all three beam-matched gantries (GTR1, GTR2, and GTR3). A correction of = 0.3 mm was applied in the imaging system to account for the imaging isocenter shift as the gantry rotates from 0 degrees to 330 degrees. The beam coincidences in X, Y, and Z were within +/- 1.0 mm for 63 different energies at 12 different gantry angles in all three beam-matched gantries. The beam coincidence results among three gantries (GTR1, GTR2, and GTR3) ranged from - 0.9 to 0.7 mm in the lateral (X), - 0.8 to 0.5 mm in the longitudinal (Y), and - 0.7 to 0.7 mm in the vertical (Z) directions. Overall, the mean isofocus of radiation isocenter was 0.4 +/- 0.2 mm in GTR1, 0.5 +/- 0.2 mm in GTR2, and 0.4 +/- 0.2 mm in GTR3. Given the consistent agreement ( 1.0 mm) between radiation and imaging isocenters for all three rooms, it appears feasible to confidently generate proton treatment plans for one treatment room and deliver in the other beam-matched rooms.
机译:辐射等中心和成像等中心之间的对准对于确保患者中的精确质子剂量沉积至关重要。目前研究的目的是在Proteusplus Proton治疗系统的三个光束匹配的铅笔扫描扫描(PBS)槽中进行综合评价(平面KV X射线与铅笔质子梁)。对于质子辐射等温度计测量,利用锥形闪烁体检测器XRV-124。为了测试龙门杆角度对光束巧合的影响,在研究中进行了12种不同的龙门角的测量。另外,通过以2.5 meV的增量获取63个不同的能量,通过获得测量来研究光束巧合的能量依赖性。在所有三个波束匹配的龙头(GTR1,GTR2和GTR3)中进行测量。在成像系统中应用<= 0.3mm的校正,以解释成像等离子化换档,因为龙门架从0度旋转到330度。在X,Y和Z中的光束重合在+/- 1.0 mm内,在所有三个光束匹配的喇叭中,在12个不同的龙门架中的12个不​​同的龙门角。光束重合在横向(x)中的三个齿轮(gtr1,gtr2和gtr3)之间的范围为0.9至0.7mm, - 纵向(y)中的0.8至0.5mm,垂直于0.7至0.7mm (z)方向。总体而言,GTR1的GTR1,0.5 +/- 0.2mm为0.4 +/- 0.2mm的平均等离子量,在GTR3中为0.4 +/- 0.2mm。鉴于所有三个房间的辐射和成像等中心之间的一致协议(<1.0毫米),它看起来可行的是一个处理室的质子治疗计划,并在另一个横梁匹配的房间内提供。

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    Baptist Hlth South Florida Dept Radiat Oncol Miami Canc Inst 8900 N Kendall Dr Miami FL 33176 USA|Florida Int Univ Dept Radiat Oncol Herbert Werthe Coll Med Miami FL 33199 USA|Vellore Inst Technol Sch Adv Sci Dept Phys Vellore Tamil Nadu India;

    Baptist Hlth South Florida Dept Radiat Oncol Miami Canc Inst 8900 N Kendall Dr Miami FL 33176 USA|Florida Int Univ Dept Radiat Oncol Herbert Werthe Coll Med Miami FL 33199 USA;

    Vellore Inst Technol Sch Adv Sci Dept Phys Vellore Tamil Nadu India;

    Baptist Hlth South Florida Dept Radiat Oncol Miami Canc Inst 8900 N Kendall Dr Miami FL 33176 USA|Florida Int Univ Dept Radiat Oncol Herbert Werthe Coll Med Miami FL 33199 USA;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Beam coincidence; Proton therapy; PBS; Beam matching;

    机译:光束巧合;质子疗法;PBS;梁匹配;

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