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Technical Note: PRESAGE three-dimensional dosimetry accurately measures Gamma Knife output factors

机译:技术说明:PRESAGE三维剂量测定法可精确测量伽马刀输出因子

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摘要

Small-field output factor measurements are traditionally very difficult because of steep dose gradients, loss of lateral electronic equilibrium, and dose volume averaging in finitely sized detectors. Three-dimensional (3D) dosimetry is ideal for measuring small output factors and avoids many of these potential challenges of point and two-dimensional detectors. PRESAGE 3D polymer dosimeters were used to measure the output factors for the 4 mm and 8 mm collimators of the Leksell Perfexion Gamma Knife radiosurgery treatment system. Discrepancies between the planned and measured distance between shot centers were also investigated. A Gamma Knife head frame was mounted onto an anthropomorphic head phantom. Special inserts were machined to hold 60 mm diameter, 70 mm tall cylindrical PRESAGE dosimeters. The phantom was irradiated with one 16 mm shot and either one 4 mm or one 8 mm shot, to a prescribed dose of either 3 Gy or 4 Gy to the 50% isodose line. The two shots were spaced between 30 mm and 60 mm apart and aligned along the central axis of the cylinder. The Presage dosimeters were measured using the DMOS-RPC optical CT scanning system. Five independent 4 mm output factor measurements fell within 2% of the manufacturer’s Monte Carlo simulation-derived nominal value, as did two independent 8 mm output factor measurements. The measured distances between shot centers varied by ± 0.8 mm with respect to the planned shot displacements. On the basis of these results, we conclude that PRESAGE dosimetry is excellently suited to quantify the difficult-to-measure Gamma Knife output factors.
机译:传统上,由于陡峭的剂量梯度,横向电子平衡的损失以及尺寸有限的探测器中的剂量体积平均,小场输出因子测量非常困难。三维(3D)剂量法是测量较小输出因子的理想选择,避免了点和二维检测器的许多潜在挑战。 PRESAGE 3D聚合物剂量计用于测量Leksell Perfexion Gamma刀放射外科治疗系统的4 mm和8 mm准直仪的输出因子。还研究了射击中心之间的计划距离与测量距离之间的差异。伽玛刀头架安装在拟人化的头部模型上。对特殊插件进行了加工,以容纳直径60毫米,高70毫米的圆柱形PRESAGE剂量计。用一个16 mm的针和一个4 mm的针或一个8 mm的针对体模进行辐照,以50%的等剂量线的3 Gy或4 Gy的处方剂量照射。两次射击的间隔为30毫米至60毫米,并沿圆柱体的中心轴对齐。使用DMOS-RPC光学CT扫描系统测量Presage剂量计。五次独立的4毫米输出因子测量值落在制造商的蒙特卡洛模拟得出的标称值的2%范围内,两次独立的8毫米输出因子测量值也落在该值的2%之内。相对于计划的射击位移,测得的射击中心之间的距离变化了±0.8 mm。根据这些结果,我们得出结论,PRESAGE剂量法非常适合量化难以测量的伽马刀输出因子。

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