典型文献
Sparing lung tissue with virtual block method in VMAT planning for locally advanced non-small cell lung cancer
文献摘要:
This study aimed to exploit a new virtual block method to spare normal lung tissue in VMAT planning for patients with locally advanced non-small cell lung cancer(LA-NSCLC).The previous method was used to manually restrict the angle of the beam passing through,which ignored the location and shape of large targets that varied between different slices and did not block the beamlets precisely.Unlike the previous method,this new virtual block method was used to block the beamlets when nec-essary by closing the multi-leaf collimator(MLC)at pre-requisite angles.The algorithm for closing the MLC depended on the thickness of the beamlets passing through the lungs and avoided only the entrance radiation beamlet.Moreover,this block can be automatically contoured.A retrospective study was performed to compare the VMAT plans with and without the virtual block method for 17 LA-NSCLC patients,named the block plan(B-plan)/non-block plan(N-plan).All cases were selected in this study because of the large tumor size and unmet dose constraints of the lungs.In addition to the maximum dose constraint for the virtual block,B-plans adopted identical optimization parameters to N-plans for each patient.These two types of plans were compared in terms of dosimetric indices and plan scores.The results were statistically analyzed using the Wilcoxon nonparametric signed-rank test.B-plans have advantages in the following dosimetric metrics that have statistical significance(p<0.05):(1)lower V5/V10/Dmean/normal tissue complication probability(NTCP)of total lungs;(2)reductions in V5/V10 for the contralateral lung;(3)decrease in Dmean/V40 of the heart;(4)decrease in esophagus V40;(5)reductions in Dmean,V5/V10 of normal tissue.B-plans(82.51±7.07)achieved higher-quality scores than N-plans(80.74±7.22).The new virtual block spared the lungs as well as other normal structures in VMAT planning for LA-NSCLC.Thus,the block method may decrease the risk of radiation-related toxicity in patients.
文献关键词:
中图分类号:
作者姓名:
Jia-Yun Chen;Da-Quan Wang;Xiao-Dong Zhang;Qi Fu;Xue-Na Yan;Kuo Men;Jian-Rong Dai;Nan Bi
作者机构:
Department of Radiation Oncology,National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital,Chinese Academy of Medical Sciences and Peking Union Medical College,Beijing 100021,China;Department of Radiation Oncology,State Key Laboratory of Oncology in South China,Collaborative Innovation Center for Cancer Medicine,Sun Yat-Sen University Cancer Center,Guangzhou 510060,China;Department of Radiation Physics,The University of Texas MD Anderson Cancer Center,Houston,TX,USA
文献出处:
引用格式:
[1]Jia-Yun Chen;Da-Quan Wang;Xiao-Dong Zhang;Qi Fu;Xue-Na Yan;Kuo Men;Jian-Rong Dai;Nan Bi-.Sparing lung tissue with virtual block method in VMAT planning for locally advanced non-small cell lung cancer)[J].核技术(英文版),2022(04):136-150
A类:
beamlets,beamlet
B类:
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AB值:
0.483801
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