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计划调制对容积调强放疗肝脏立体定向体部放疗中相互作用效应的影响。

The influence of plan modulation on the interplay effect in VMAT liver SBRT treatments.

作者信息

Hubley Emily, Pierce Greg

机构信息

Department of Medical Physics, Tom Baker Cancer Centre, 1331 29 Street NW, Calgary, AB T2N 4N2, Canada; Department of Physics & Astronomy, University of Calgary, 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada.

Department of Medical Physics, Tom Baker Cancer Centre, 1331 29 Street NW, Calgary, AB T2N 4N2, Canada; Department of Physics & Astronomy, University of Calgary, 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada; Department of Oncology, University of Calgary, 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada.

出版信息

Phys Med. 2017 Aug;40:115-121. doi: 10.1016/j.ejmp.2017.07.025. Epub 2017 Aug 4.

Abstract

Volumetric modulated arc therapy (VMAT) uses multileaf collimator (MLC) leaves, gantry speed, and dose rate to modulate beam fluence, producing the highly conformal doses required for liver radiotherapy. When targets that move with respiration are treated with a dynamic fluence, there exists the possibility for interplay between the target and leaf motions. This study employs a novel motion simulation technique to determine if VMAT liver SBRT plans with an increase in MLC leaf modulation are more susceptible to dosimetric differences in the GTV due to interplay effects. For ten liver SBRT patients, two VMAT plans with different amounts of MLC leaf modulation were created. Motion was simulated using a random starting point in the respiratory cycle for each fraction. To isolate the interplay effect, motion was also simulated using four specific starting points in the respiratory cycle. The dosimetric differences caused by different starting points were examined by subtracting resultant dose distributions from each other. When motion was simulated using random starting points for each fraction, or with specific starting points, there were significantly more dose differences in the GTV (maximum 100cGy) for more highly modulated plans, but the overall plan quality was not adversely affected. Plans with more MLC leaf modulation are more susceptible to interplay effects, but dose differences in the GTV are clinically negligible in magnitude.

摘要

容积调强弧形放疗(VMAT)利用多叶准直器(MLC)叶片、机架速度和剂量率来调制射束注量,产生肝脏放疗所需的高度适形剂量。当对随呼吸运动的靶区进行动态注量治疗时,靶区运动和叶片运动之间存在相互作用的可能性。本研究采用一种新颖的运动模拟技术,以确定增加MLC叶片调制的VMAT肝脏立体定向体部放疗(SBRT)计划是否因相互作用效应而更易出现靶区剂量差异。对于10例肝脏SBRT患者,创建了两个具有不同MLC叶片调制量的VMAT计划。每个分次在呼吸周期中使用一个随机起始点模拟运动。为了分离相互作用效应,还在呼吸周期中使用四个特定起始点模拟运动。通过相互减去所得剂量分布来检查不同起始点引起的剂量差异。当每个分次使用随机起始点或特定起始点模拟运动时,调制程度更高的计划在靶区中出现的剂量差异显著更多(最大100cGy),但总体计划质量未受到不利影响。MLC叶片调制更多的计划更容易受到相互作用效应的影响,但靶区剂量差异在临床上可忽略不计。

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