高能光子束小场测量数据与治疗计划系统 (TPS) 的比较研究。

ISRN oncology Pub Date : 2014-05-06 eCollection Date: 2014-01-01 DOI:10.1155/2014/901436
Khaled El Shahat, Aziza El Saeid, Ehab Attalla, Adel Yassin
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引用次数: 0

摘要

为实现放射治疗对肿瘤的控制,需要对剂量分布进行规划,使其既能很好地杀灭所有癌细胞,又不会对正常组织造成不可接受的并发症。本研究的目的是准确计算小场域的剂量,并通过评估计划系统计算的准确性来实现这一目标。这将与使用不同探测器对相同小场尺寸的剂量进行的实际测量结果进行比较。实际工作分两步进行(i) 根据最新的技术报告系列(IAEATRS-398),确定由三个电离室测量并由治疗计划系统(TPS)计算的剂量估算所需的物理因素;(ii) 比较计算数据和测量数据。我们对小场的光子能量辐照数据分析与电离室和治疗计划系统获得的数据相匹配。射线胶片被用作所获数据的附加检测器,结果显示与 TPS 计算结果相符。可以得出结论,所研究的小场尺寸在 6 MV 和 15 MV 时分别平均为 6% 和 4%。射线胶片测量结果与 TPS 计算结果的差异在 ±2% 以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparative Study between Measurement Data and Treatment Planning System (TPS) in Small Fields for High Energy Photon Beams.

Comparative Study between Measurement Data and Treatment Planning System (TPS) in Small Fields for High Energy Photon Beams.

Comparative Study between Measurement Data and Treatment Planning System (TPS) in Small Fields for High Energy Photon Beams.

Comparative Study between Measurement Data and Treatment Planning System (TPS) in Small Fields for High Energy Photon Beams.

To achieve tumor control for radiotherapy, a dose distribution is planned which has a good chance of sterilizing all cancer cells without causing unacceptable normal tissue complications. The aim of the present study was to achieve an accurate calculation of dose for small field dimensions and perform this by evaluating the accuracy of planning system calculation. This will be compared with real measurement of dose for the same small field dimensions using different detectors. Practical work was performed in two steps: (i) determination of the physical factors required for dose estimation measured by three ionization chambers and calculated by treatment planning system (TPS) based on the latest technical report series (IAEATRS-398) and (ii) comparison of the calculated and measured data. Our data analysis for small field is irradiated by photon energy matched with the data obtained from the ionization chambers and the treatment planning system. Radiographic films were used as an additional detector for the obtained data and showed matching with TPS calculation. It can be concluded that studied small field dimensions were averaged 6% and 4% for 6 MV and 15 MV, respectively. Radiographic film measurements showed a variation in results within ±2% than TPS calculation.

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