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The impact of different leaf limited accelerations on leaf-positional error of a self-developed MLC prototype

机译:不同叶片限量加速对自发达的MLC原型的叶位置误差的影响

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Multi-leaf collimator (MLC) provides an available approach to achieve sophisticated radiotherapy techniques and plays an important role in advanced high quality radiation therapy. Delivery accuracy of radiation therapy mainly depends on the leaf sequence generated by treatment plans and dynamic performance of MLCs. Previous studies have explored the influence of various leaf limited velocities and dose rates on the leaf-positional error. However, there is a lack of research on the influence of different leaf limited accelerations on the delivery accuracy or leaf-positional error. Confining our study to the technique of sliding window, we investigate the effect of various leaf limited accelerations in treatment plans on leaf-positional error of a self-developed MLC prototype. In order to preliminarily verify the assumption, experiments of leaf trajectories sequenced with different limited accelerations under the same displacement were performed. Thereafter, according to the principle of the sliding window technique and the prescribed intensity profile, leaf trajectories for different leaf limited accelerations from 1.0 m/s2 to 5.0 m/s2 were calculated. Conducted on the self-developed MLC prototype, the experiment results have shown that the maximum leaf-positional error can be kept within 0.5 mm while the average and RMS of the leaf-positional error vary from leaf limited accelerations. Under the proposal leaf limited acceleration of 3 m/s2, the self-developed MLC achieved the optimal dynamic performance. In conclusion, for commercial MLCs, optimal constraint for treatment plans should be investigated and determined because incorporation of reasonable servo-mechanical constraints into leaf sequencing algorithm can enhance the conformity between planned and delivered fields.
机译:多叶子准直器(MLC)提供了一种可用的方法来实现复杂的放射治疗技术,在先进的高质量放射治疗中起着重要作用。放射疗法的递送准确性主要取决于通过治疗计划产生的叶片序列和MLC的动态性能。以前的研究探讨了各种叶子有限速度和剂量率对叶子位置误差的影响。然而,缺乏关于不同叶限制加速度对递送精度或叶子位置误差的影响的研究。将我们的研究限制在滑动窗口技术上,我们调查各种叶子有限加速度在自发出的MLC原型的叶子位置误差的治疗计划中的影响。为了初步验证假设,进行了在相同位移下用不同限制加速度测序的叶轨迹的实验。此后,根据滑动窗技术和规定的强度曲线的原理,计算了从1.0m / s2到5.0 m / s2的不同叶子限制加速的叶轨迹。在自开发的MLC原型上进行,实验结果表明,最大叶子位置误差可以保持在0.5毫米之内,而叶子位置误差的平均值和RMS从叶有限的加速度变化。根据提案叶限制加速度为3米/平方米,自行开发的MLC实现了最佳动态性能。总之,对于商业MLC来说,应研究和确定治疗计划的最佳约束,因为将合理的伺服机械约束纳入叶序算法可以增强计划和交付字段之间的符合性。

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