Ter-Antonyan R, Frieda D
Mercy Hospital CH Chub O'Reilly Cancer Center, Springfield, MO.
Med Phys. 2012 Jun;39(6Part18):3832. doi: 10.1118/1.4735638.
We investigate the impact of a treatment couch and its modeling in a treatment planning system on accurate dose delivery in Volumetric Modulated Arc Therapy (VMAT).
A cone-beam CT of a Varian couch on a Varian Clinac 21EX unit, consisting of a carbon-fiber imaging couch top and supporting rails, was acquired, and a couch model was created in Philips Pinnacle 9.0 TPS based on the geometry of the couch top and the rails. The densities of the modeled couch top and the rails were based on the Hounsfield Unit and CT number-to-density information obtained from the CBCT scan. The densities were then adjusted based on the ion chamber measurements of a beam transmitting through the couch posteriorly at different gantry angles varying 1-5 degrees. SmartArc VMAT plans for patient treatment with and without the modeled couch were then generated and dose distributions were verified using the IBA MatriXX 2D ion chamber array.
We found that depending on the gantry angle the beam can be attenuated by up to 17% when going through the supporting rails, and up to 5% when passing through the couch top. Because of this, dose distributions of SmartArc plans were not accurate and did not pass the dose verification criteria without accurate modeling of the treatment couch. Adding the couch model remedies this problem and avoids underdosing the target.
We showed that the impact of a treatment couch in radiation therapy can be significant, and it is essential to include an accurate model of the couch in the treatment planning system, particularly for SmartArc VMAT plans in Philips Pinnacle TPS.
我们研究了治疗床及其在治疗计划系统中的建模对容积调强弧形放疗(VMAT)中精确剂量递送的影响。
在瓦里安Clinac 21EX设备上获取了瓦里安治疗床的锥形束CT图像,该治疗床由碳纤维成像床面和支撑轨道组成,并基于床面和轨道的几何形状在飞利浦Pinnacle 9.0治疗计划系统中创建了治疗床模型。建模的床面和轨道的密度基于从CBCT扫描获得的亨氏单位和CT数 - 密度信息。然后根据在1 - 5度不同机架角度下从后方穿过治疗床的射束的电离室测量结果调整密度。随后生成了有和没有建模治疗床的患者治疗的SmartArc VMAT计划,并使用IBA MatriXX二维电离室阵列验证剂量分布。
我们发现,根据机架角度的不同,射束穿过支撑轨道时最多可衰减17%,穿过床面时最多可衰减5%。因此,在没有对治疗床进行精确建模的情况下,SmartArc计划的剂量分布不准确,未通过剂量验证标准。添加治疗床模型可解决此问题并避免靶区剂量不足。
我们表明治疗床在放射治疗中的影响可能很大,在治疗计划系统中纳入准确的治疗床模型至关重要,特别是对于飞利浦Pinnacle治疗计划系统中的SmartArc VMAT计划。