首页> 外文OA文献 >Electronic tissue compensation achieved with both dynamic and static multileaf collimator in eclipse treatment planning system for Clinac 6 EX and 2100 CD Varian linear accelerators: Feasibility and dosimetric study
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Electronic tissue compensation achieved with both dynamic and static multileaf collimator in eclipse treatment planning system for Clinac 6 EX and 2100 CD Varian linear accelerators: Feasibility and dosimetric study

机译:在Clinac 6 EX和2100 CD Varian线性加速器的日食治疗计划系统中,通过动态和静态多叶准直器实现的电子组织补偿:可行性和剂量学研究

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摘要

Dynamic multileaf collimator (DMLC) and static multileaf collimator (SMLC), along with three-dimensional treatment planning system (3-D TPS), open the possibility of tissue compensation. A method using electronic tissue compensator (ETC) has been implemented in Eclipse 3-D TPS (V 7.3, Varian Medical Systems, Palo Alto, USA) at our center. The ETC was tested for head and neck conformal radiotherapy planning. The purpose of this study was to verify the feasibility of DMLC and SMLC in head and neck field irradiation for delivering homogeneous dose in the midplane at a pre-defined depth. In addition, emphasis was given to the dosimetric aspects in commissioning ETC in Eclipse. A Head and Neck Phantom (The Phantom Laboratory, USA) was used for the dosimetric verification. Planning was carried out for both DMLC and SMLC ETC plans. The dose calculated at central axis by eclipse with DMLC and SMLC was noted. This was compared with the doses measured on machine with ion chamber and thermoluminescence dosimetry (TLD). The calculated isodose curves and profiles were compared with the measured ones. The dose profiles along the two major axes from Eclipse were also compared with the profiles obtained from Amorphous Silicon (AS500) Electronic portal imaging device (EPID) on Clinac 6 EX machine. In uniform dose regions, measured dose values agreed with the calculated doses within 3%. Agreement between calculated and measured isodoses in the dose gradient zone was within 3 mm. The isodose curves and the profiles were found to be in good agreement with the measured curves and profiles. The measured and the calculated dose profiles along the two major axes were flat for both DMLC and SMLC. The dosimetric verification of ETC for both the linacs demonstrated the feasibility and the accuracy of the ETC treatment modality for achieving uniform dose distributions. Therefore, ETC can be used as a tool in head and neck treatment planning optimization for improved dose uniformity.
机译:动态多叶准直仪(DMLC)和静态多叶准直仪(SMLC)以及三维治疗计划系统(3-D TPS)开启了组织补偿的可能性。我们中心的Eclipse 3-D TPS(V 7.3,Varian Medical Systems,Palo Alto,美国)已经实现了一种使用电子组织补偿器(ETC)的方法。对ETC进行了头部和颈部适形放疗计划的测试。这项研究的目的是验证DMLC和SMLC在头颈部场照射中以预定深度在中平面内提供均匀剂量的可行性。此外,在Eclipse中调试ETC时,重点放在剂量方面。头颈部幻影(美国幻影实验室)用于剂量学验证。已为DMLC和SMLC ETC计划进行了规划。记录了通过日食用DMLC和SMLC在中轴处计算的剂量。将其与在带有离子室和热致发光剂量法(TLD)的机器上测量的剂量进行比较。将计算出的等剂量曲线和轮廓与测量值进行比较。还比较了从Eclipse沿两个主轴的剂量分布与在Clinac 6 EX机器上从非晶硅(AS500)电子门禁成像设备(EPID)获得的分布进行了比较。在均匀剂量区域,测得的剂量值与计算出的剂量在3%之内一致。剂量梯度区域中的计算和测量的等剂量之间的一致性在3 mm以内。发现等剂量曲线和轮廓与测得的曲线和轮廓非常吻合。对于DMLC和SMLC,沿两个主轴的测量和计算的剂量分布是平坦的。两种直线加速器的ETC剂量学验证证明了实现均匀剂量分布的ETC治疗方式的可行性和准确性。因此,ETC可以用作优化头颈部治疗计划以提高剂量均匀性的工具。

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