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A device for precision positioning and alignment of room lasers to diminish their contribution to patient setup errors

机译:一种用于精确定位和对准室内激光器以减少其对患者设置错误的影响的设备

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摘要

This report presents an analysis of patient setup errors resulting from inaccurately positioned wall lasers. It suggests that laser beams should agree within 0.2 degree or better with the machine axes that they are delineating. For typical simulator and treatment rooms having wall‐to‐isocenter distances of 3 m, this requirement is satisfied when the beam‐emitting aperture is mounted within about 1.0 cm from the intersection of the respective machine axis with the wall. To achieve the required precision, we developed and clinically tested a simple, inexpensive tool, the Laser Placer (LP). The essential component of the LP is a cube with mirror surfaces that is aligned with the machine axes using built‐in spirit levels and the light field and crosshairs of the collimator. Wall, ceiling, and sagittal lasers are installed and aligned according to reflections of their beams by the cube, and reference lines provided by the LP. Measurements showed that, even in new accelerator installations performed by highly experienced technicians, wall lasers are often mounted off target by more than 1.5 cm. Such inaccuracies can contribute systematic errors of 2 mm or more to the random setup errors attributable to interfraction movement in patient anatomy. To keep setup errors to a minimum, medical physicists should check beam orthogonality in addition to beam congruence at isocenter as recommended by the TG‐40 quality assurance protocol from the American Association of Physicists in Medicine.PACS number: 87.53.‐j
机译:该报告分析了由于壁式激光定位不正确而导致的患者设置错误。这表明激光束应与其划定的加工轴相差0.2度或更好。对于壁距等距距离为3 m的典型模拟器和治疗室,当将光束发射孔安装在距相应机器轴线与墙壁的交点约1.0 cm之内时,可以满足此要求。为了达到所需的精度,我们开发并临床测试了一种简单,廉价的工具,即激光放置器(LP)。 LP的基本组成部分是一个带有镜面的立方体,该立方体使用内置的水平仪和准直仪的光场和十字准线与机器轴对齐。根据立方体反射的光束以及LP提供的参考线,安装并对齐墙面,天花板和矢状激光器。测量结果表明,即使在由经验丰富的技术人员执行的新加速器安装中,壁式激光器通常也会偏离目标1.5厘米以上。这种不准确性可能导致2 mm或更大的系统误差,这归因于患者解剖结构中的屈光运动引起的随机设置误差。为了将设置误差降至最低,医学物理学家应按照美国医学物理学会TG-40质量保证规程的建议,除了检查等中心点的光束一致性外,还应检查光束正交性.PACS编号:87.53.-j

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