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Quantitative evaluation by measurement and modeling of the variations in dose distributions deposited in mobile targets

机译:通过在移动目标中沉积的剂量分布变化的测量和建模的定量评估

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The objective of this study is to quantitatively evaluate variations of dose distributions deposited in mobile target by measurement and modeling. The effects of variation in dose distribution induced by motion on tumor dose coverage and sparing of normal tissues were investigated quantitatively. The dose distributions with motion artifacts were modeled considering different motion patterns that include (a) motion with constant speed and (b) sinusoidal motion. The model predictions of the dose distributions with motion artifacts were verified with measurement where the dose distributions from various plans that included three-dimensional conformal and intensity-modulated fields were measured with a multiple-diode-array detector (MapCheck2), which was mounted on a mobile platform that moves with adjustable motion parameters. For each plan, the dose distributions were then measured with MapCHECK2 using different motion amplitudes from 0-25 mm. In addition, mathematical modeling was developed to predict the variations in the dose distributions and their dependence on the motion parameters that included amplitude, frequency and phase for sinusoidal motions. The dose distributions varied with motion and depended on the motion pattern particularly the sinusoidal motion, which spread out along the direction of motion. Study results showed that in the dose region between isocenter and the 50% isodose line, the dose profile decreased with increase of the motion amplitude. As the range of motion became larger than the field length along the direction of motion, the dose profiles changes overall including the central axis dose and 50% isodose line. If the total dose was delivered over a time much longer than the periodic time of motion, variations in motion frequency and phase do not affect the dose profiles. As a result, the motion dose modeling developed in this study provided quantitative characterization of variation in the dose distributions induced by motion, which can be employed in radiation therapy to quantitatively determine the margins needed for treatment planning considering dose spillage to normal tissue.
机译:本研究的目的是通过测量和建模定量评估在移动目标中沉积的剂量分布的变化。定量研究了通过运动诱导的剂量分布的变化的影响和正常组织的备用。考虑不同运动模式的模型模型,其模型分布模型,该运动模式包括(a)恒定速度和(b)正弦运动的运动。用测量验证了运动伪影的剂量分布的模型预测,其中通过安装开启的多二极管阵列检测器(MapCheck2)测量包括三维共形和强度调制场的各种计划的剂量分布。使用可调运动参数移动的移动平台。对于每个计划,然后使用来自0-25mm的不同运动幅度用MapCheck2测量剂量分布。此外,开发了数学建模以预测剂量分布的变化及其对包括幅度,频率和阶段的运动参数的依赖性。剂量分布随运动而变化,并且依赖于运动模式,特别是正弦运动,其沿运动方向散布。研究结果表明,在等温度的剂量区域和50%同学线之间,剂量曲线随着运动幅度的增加而降低。随着沿着运动方向的运动范围大于场长,随着沿着运动方向的场长,剂量曲线总体变化包括中心轴剂量和50%同学线。如果在比周期运动时间长的时间内递送总剂量,则运动频率和相的变化不会影响剂量轮廓。结果,本研究开发的运动剂量建模提供了通过运动诱导的剂量分布的变化的定量表征,其可用于放射疗法,以定量地确定考虑剂量溢出到正常组织的治疗计划所需的空间。

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