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首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Peripheral dose heterogeneity due to the thread effect in total marrow irradiation with helical tomotherapy
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Peripheral dose heterogeneity due to the thread effect in total marrow irradiation with helical tomotherapy

机译:螺旋断层摄影在全骨髓照射中由于螺纹效应导致的外周剂量异质性

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Purpose: To report potential dose heterogeneity leading to underdosing at different skeletal sites in total marrow irradiation (TMI) with helical tomotherapy due to the thread effect and provide possible solutions to reduce this effect. Methods and Materials: Nine cases were divided into 2 groups based on patient size, defined as maximum left-to-right arm distance (mLRD): small mLRD (≤47 cm) and large mLRD (>47 cm). TMI treatment planning was conducted by varying the pitch and modulation factor while a jaw size (5 cm) was kept fixed. Ripple amplitude, defined as the peak-to-trough dose relative to the average dose due to the thread effect, and the dose-volume histogram (DVH) parameters for 9 cases with various mLRD was analyzed in different skeletal regions at off-axis (eg, bones of the arm or femur), at the central axis (eg, vertebrae), and planning target volume (PTV), defined as the entire skeleton plus 1-cm margin. Results: Average ripple amplitude for a pitch of 0.430, known as one of the magic pitches that reduce thread effect, was 9.2% at 20 cm off-axis. No significant differences in DVH parameters of PTV, vertebrae, or femur were observed between small and large mLRD groups for a pitch of ≤0.287. Conversely, in the bones of the arm, average differences in the volume receiving 95% and 107% dose (V95 and V107, respectively) between large and small mLRD groups were 4.2% (P=.016) and 16% (P=.016), respectively. Strong correlations were found between mLRD and ripple amplitude (rs=.965), mLRD and V95 (rs=-.742), and mLRD and V107 (rs=.870) of bones of the arm. Conclusions: Thread effect significantly influences DVH parameters in the bones of the arm for large mLRD patients. By implementing a favorable pitch value and adjusting arm position, peripheral dose heterogeneity could be reduced.
机译:目的:报告潜在的剂量异质性,由于螺纹效应,导致在全子辐照(TMI)的不同骨骼部位剂量不足,采用螺旋断层摄影术,并提供可能的解决方案以减轻这种效应。方法和材料:将9例患者根据患者大小分为两组,定义为最大左右臂距离(mLRD):小mLRD(≤47cm)和大mLRD(> 47 cm)。通过改变音调和调制系数来进行TMI治疗计划,同时保持颌骨尺寸(5厘米)固定。纹波幅度(定义为相对于平均剂量的峰谷剂量,归因于螺纹效应),并在离轴的不同骨骼区域中分析了9例不同mLRD患者的剂量-体积直方图(DVH)参数( (例如,手臂或股骨的骨头),在中心轴(例如,椎骨)和计划目标体积(PTV),定义为整个骨骼加上1厘米的空白。结果:0.430螺距的平均波纹幅度(被称为减少螺线效应的魔术螺距之一)在离轴20 cm处为9.2%。在较小和较大的mLRD组之间,当间距≤0.287时,未观察到PTV,椎骨或股骨的DVH参数的显着差异。相反,在手臂的骨骼中,大型和小型mLRD组之间接受95%和107%剂量(分别为V95和V107)的体积的平均差异为4.2%(P = .016)和16%(P =。 016)。在手臂骨骼的mLRD和波动幅度(rs = .965),mLRD和V95(rs =-。742)以及mLRD和V107(rs = .870)之间发现强烈的相关性。结论:螺纹效应对大型mLRD患者的手臂骨骼中的DVH参数有显着影响。通过实现合适的俯仰值并调整手臂位置,可以减少周围剂量的异质性。

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