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Effect of Non-Delineated Normal Volumes in IMRT Treatment for Left Breast Cancer: A Treatment Planning Study
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作者 Tamer Dawod Sabbah I. Hammoury +1 位作者 Mostafa Elnaggar Mustafa Kamal 《International Journal of Medical Physics, Clinical Engineering and Radiation Oncology》 2015年第1期13-24,共12页
Introduction: Intensity Modulated Radiation Therapy (IMRT) planning dose calculation process depends on IMRT dose constraints. So, if there was any structure along the treatment beam path not delineated, it would not ... Introduction: Intensity Modulated Radiation Therapy (IMRT) planning dose calculation process depends on IMRT dose constraints. So, if there was any structure along the treatment beam path not delineated, it would not be taken into account during that calculation process. During IMRT routine practical work, it is noticed that there are some non-delineated normal tissue volumes that received un-aimed dose. Aim: The purpose of this study was to study the effect of unusually delineated normal volumes in IMRT treatment for left sided breast cancer. Method: Ten left sided breast cancer patients were planned with IMRT inverse planning system. The unusually delineated normal volumes were delineated and taken into account in IMRT dose constraints as an Organ at Risk. Doses received by that volume were compared in the two methods quantitatively from Dose Volume Histograms (DVHs) and qualitatively from (axial cuts). Results: The results showed that doses received by the unusually delineated volume when they were delineated and taken into account in IMRT dose constraints were significantly higher than when they were not. Conclusions: The results showed that for IMRT planning technique used for treating left-sided breast cancer, all of the normal tissues/structures that are closed to the treatment targets must be delineated and taken into account in the IMRT planning dose constraints. 展开更多
关键词 RADIOTHERAPY IMRT Linear ACCELERATOR TREATMENT Planning System TPS NTIAV
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Plastic Deformation Evaluation of 6201 Alloy by Using Positron Annihilation Lifetime Technique
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作者 Amira.Nassar Magda Abd El-Wahab +1 位作者 Eman Abd EL Hamid Zeinab Yousef 《材料科学与工程(中英文A版)》 2013年第1期14-21,共8页
关键词 正电子湮没寿命 塑性变形 技术评价 合金 扫描电子显微镜 微观结构 结构缺陷 机械性能
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The Role of Valence Electron Concentration on the Structure and Properties of Rapidly Solidified Sn-Ag Binary Alloys
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作者 M. Kamal A. B. El-Bediwi +1 位作者 T. El-Ashram M. E. Dorgham 《Materials Sciences and Applications》 2012年第3期179-184,共6页
A group of binary Sn-xAg alloys (x = 0.5, 1.5, 2.5, 3.5, 4.5, 5.5 and 6.5 wt%) has been produced by a single copper roller melt-spinning technique. In this study the interaction between Fermi sphere and Brillouin zone... A group of binary Sn-xAg alloys (x = 0.5, 1.5, 2.5, 3.5, 4.5, 5.5 and 6.5 wt%) has been produced by a single copper roller melt-spinning technique. In this study the interaction between Fermi sphere and Brillouin zone and Hume-Rothery condition of phase stability have been verified. It is found that by increasing valence electron concentration VEC the diameter of Fermi sphere 2kF increases which leads to the increase in the diameter of Brillouin zone which arises from the decrease in volume of the unit cell. It is found that the electrical resistivity increases by increasing VEC due to the decrease in relaxation time τ with increasing VEC. Also it has been confirmed that the correlation between Young’s modulus and the axial ratio c/a of β-Sn unit cell. 展开更多
关键词 Alloys Rapid Solidification VALENCE Electron CONCENTRATION Resistivity Young’s Modulus FERMI Energy BRILLOUIN Zone
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Effect of Heat Treatment on Mechanical Properties of Al-1.5Cu-9.5Zn-3Mg Rapidly Solidified Alloy
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作者 El Said Gouda Emad Makboul Ahmed Nabih Lotfi Tawfik 《Materials Sciences and Applications》 2010年第4期199-201,共3页
Ribbons with the composition Al-1.5Cu-9.5Zn-3Mg were prepared by melt spinning technique. Microhardness and tensile strength were measured. The melt spun hardness and ultimate tensile strength values were as high as 2... Ribbons with the composition Al-1.5Cu-9.5Zn-3Mg were prepared by melt spinning technique. Microhardness and tensile strength were measured. The melt spun hardness and ultimate tensile strength values were as high as 291 HV and 660 MN/m2, respectively. Hardness values are relaxed to lower values on prolonged thermal annealing to around 50%. X-ray diffraction lines corresponding to Cu, Zn and Mg were disappeared for the as melt spun ribbons, which indicates a complete solubility of these element in Al matrix. On prolonged thermal annealing these alloying elements were precipitated. 展开更多
关键词 MICROHARDNESS Rapid SOLIDIFICATION UTS TENSILE Strength
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