Dose Perturbations at Heterogeneous Interfaces in Radiotherapy - an EGSnrc based Monte Carlo Investigation

被引:0
|
作者
Ahmad, Muhammad Adeel [1 ]
Ahmed, Shahbaz [1 ]
Kakakhel, Muhammad Basim [1 ]
Rehman, Shakeel Ur [1 ]
Mirza, Sikander M. [1 ]
机构
[1] PIEAS, DPAM, Islamabad, Pakistan
来源
2016 INTERNATIONAL CONFERENCE ON EMERGING TECHNOLOGIES (ICET) | 2016年
关键词
interface dosimetry; air cavity; Lung heterogeneity; backscatter dose factor; Forward-scatter dose factor; EGSnrc; DOSXYZnrc; BEAMnrc; ATOMIC-NUMBER INTERFACES; X-RAY-BEAMS; PHOTON BEAMS; HIGH-ENERGY; AIR CAVITIES; RADIATION; CODE; MEDIA;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Radiotherapy dose computation in the presence of tissue heterogeneities presents a challenge for the treatment planning system (TPS). This study presents a Monte Carlo (MC) investigation of dose perturbation due to various kinds of heterogeneities (soft tissue interfaces with bone, air, lung and metallic implants) for a range of clinically useful photon energies and field sizes. EGSnrc MC radiation transport code has been used for linear accelerator head modeling and phantom dose calculations. Dose perturbations were quantified in terms of forward- and backscatter factors as well as inside the heterogeneity of low densities for various field sizes including 5 x 5 cm(2), 10 x 10 cm(2) and 15 x 15 cm(2). For lung heterogeneity, both under-dosage and over-dosage has been assessed in relation to the field sizes and energies. These simulations confirm under-dosage in the case of lung heterogeneity for small field sizes, which increases with the energy. However, lung tissues reflect an overdose with smaller energies and larger field sizes.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] An evaluation of calculation parameters in the EGSnrc/BEAMnrc Monte Carlo codes and their effect on surface dose calculation
    Kim, Jung-Ha
    Hill, Robin
    Kuncic, Zdenka
    PHYSICS IN MEDICINE AND BIOLOGY, 2012, 57 (14): : N267 - N278
  • [22] Monte Carlo calculated conceptus dose in brain radiotherapy
    Tzedakis, A
    Damilakis, J
    Stratakis, J
    Varveris, H
    RADIOTHERAPY AND ONCOLOGY, 2004, 73 : S446 - S447
  • [23] Monte Carlo dose calculation in modern day radiotherapy
    Kueng, R.
    RADIOTHERAPY AND ONCOLOGY, 2022, 170 : S2 - S2
  • [24] Verification of a fast Monte Carlo dose calculation algorithm by EGSnrc using the statistical separation method
    Fippel, M.
    Nüsslin, F.
    2001, Elsevier GmbH (11): : 152 - 160
  • [25] Monte Carlo calculations of radiotherapy dose in "homogeneous" anatomy
    Kairn, Tanya
    Livingstone, Alexander G.
    Crowe, Scott B.
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2020, 78 : 156 - 165
  • [26] A Monte Carlo based radiotherapy simulator
    Bliznakova, K
    Kolitsi, Z
    Pallikarakis, N
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 2004, 222 (3-4): : 445 - 461
  • [27] GPU-based fast Monte Carlo simulation for radiotherapy dose calculation
    Jia, Xun
    Gu, Xuejun
    Graves, Yan Jiang
    Folkerts, Michael
    Jiang, Steve B.
    PHYSICS IN MEDICINE AND BIOLOGY, 2011, 56 (22): : 7017 - 7031
  • [28] A method of CBCT imaging scatter correction based on the EGSnrc monte carlo simulations
    Meng, H. P.
    Dong, H. J.
    Wang, K. Q.
    Feng, Y. M.
    BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2018, 123 : 21 - 22
  • [29] A Monte-Carlo based dose engine for proton radiotherapy treatment planning
    Newhauser, W.
    Fontenot, J.
    Zheng, Y.
    Taddei, P.
    Mirkovic, D.
    Titt, U.
    Zhu, X.
    Sahoo, N.
    Schaffner, B.
    Langenegger, A.
    Koch, N.
    Zhang, X.
    Mohan, R.
    MEDICAL PHYSICS, 2007, 34 (06) : 2406 - 2406
  • [30] Automated dose verification in specialized radiotherapy (ADViSR): a tool for Monte Carlo based dose verification
    Strauss, L. J.
    du Plessis, F. C. P.
    BIOMEDICAL PHYSICS & ENGINEERING EXPRESS, 2016, 2 (03):