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Design and evaluation of a variable aperture collimator for conformal radiotherapy of small animals using a microCT scanner.

机译:使用microCT扫描仪对小动物进行保形放射治疗的可变孔径准直仪的设计和评估。

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Treatment of small animals with radiation has in general been limited to planar fields shaped with lead blocks, complicating spatial localization of dose and treatment of deep-seated targets. In order to advance laboratory radiotherapy toward what is accomplished in the clinic, we have constructed a variable aperture collimator for use in shaping the beam of microCT scanner. This unit can image small animal subjects at high resolution, and is capable of delivering therapeutic doses in reasonable exposure times. The proposed collimator consists of two stages, each containing six trapezoidal brass blocks that move along a frame in a manner similar to a camera iris producing a hexagonal aperture of variable size. The two stages are offset by 30 degrees and adjusted for the divergence of the x-ray beam so as to produce a dodecagonal profile at isocenter. Slotted rotating driving plates are used to apply force to pins in the collimator blocks and effect collimator motion. This device has been investigated through both simulation and measurement. The collimator aperture size varied from 0 to 8.5 cm as the driving plate angle increased from 0 to 41 degrees. The torque required to adjust the collimator varied from 0.5 to 5 N x m, increasing with increasing driving plate angle. The transmission profiles produced by the scanner at isocenter exhibited a penumbra of approximately 10% of the collimator aperture width. Misalignment between the collimator assembly and the x-ray source could be identified on the transmission images and corrected by adjustment of the collimator location. This variable aperture collimator technology is therefore a feasible and flexible solution for adjustable shaping of radiation beams for use in small animal radiotherapy as well as other applications in which beam shaping is desired.
机译:通常,用放射线治疗小动物仅限于用铅块定形的平面区域,这会使剂量的空间定位和深部靶标的治疗复杂化。为了使实验室放射治疗朝着临床上的方向发展,我们构造了一种可变孔径准直仪,用于对microCT扫描仪的光束进行整形。该装置可对小动物对象进行高分辨率成像,并能够在合理的曝光时间内提供治疗剂量。拟议的准直仪包括两个阶段,每个阶段包含六个梯形黄铜块,它们沿着框架移动,其方式类似于产生可变大小六边形光圈的照相机光圈。这两个阶段偏移了30度,并针对X射线束的发散进行了调整,以便在等角点处生成十二边形轮廓。开槽的旋转驱动板用于向准直仪模块中的销钉施加力并实现准直仪运动。该设备已通过仿真和测量进行了研究。随驱动板角度从0度增加到41度,准直器孔径大小从0到8.5 cm变化。调整准直仪所需的扭矩从0.5到5 N x m不等,随驱动板角度的增加而增加。由扫描仪在等角点处产生的透射轮廓显示的半影约为准直器孔径宽度的10%。准直仪组件和X射线源之间的未对准可在透射图像上识别,并通过调整准直仪位置进行校正。因此,这种可变孔径准直仪技术是一种可行的,灵活的解决方案,用于可调整形状的辐射束,适用于小型动物放射治疗以及需要进行束流成形的其他应用。

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