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Dosimetric Consideration of the Lung Block in the Mantle Field

机译:地幔田肺块的剂量学考虑

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PURPOSE: To evaluate the dose under lung block as a function of depth and the effectiveness of a block as a function of block width. MATERIALS AND METHODS: Field size of mantle field was 22.8 x 32.4 cm2 . Dose distribution of the mantle field was measured with two dimensional water phantom system. To analyze the effectiveness of the lung block, central axis plane, 5cm off-axis plane, and 10cm off-axis plane were studied. RESULTS: The dose under the lung block was recorded with maximum at the depth between , 5cm and 10cm . In the central axis plane, dosimetric block width was 10-15% les than physical block width. In the 5cm off-axis plane. Dosimetric block width was 4-9% less than physical block width. In the 10cm off-axis plane, dosimetric block width was 2% less than physical block width. CONCLUSION: Depth dependence of the dose under the lung block was founded. Also, block width dependence of the lung block was founded. To induce the accurate relation between the physical block width and the "effective" block width, it needs more detailed understanding of the variables involved.
机译:目的:评估作为深度的函数的肺部阻滞下的剂量以及作为阻滞宽度的函数的阻滞有效性。材料与方法:地幔场的场大小为22.8 x 32.4 cm2。用二维水幻影系统测量了地幔场的剂量分布。为了分析肺阻塞的有效性,研究了中轴平面,5cm轴外平面和10cm轴外平面。结果:在5cm至10cm的深度记录了最大的肺阻滞剂量。在中心轴平面上,剂量块宽度比物理块宽度大10-15%les。在离轴5cm的平面上。剂量块宽度比物理块宽度小4-9%。在10cm的离轴平面中,剂量块宽度比物理块宽度小2%。结论:建立了肺部阻滞下剂量的深度依赖性。同样,建立了肺部阻滞的宽度依赖性。为了在物理块宽度和“有效”块宽度之间产生精确的关系,需要更详细地了解所涉及的变量。

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