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1)  soft damage gettering
软损伤吸杂
1.
The mechanism of soft damage gettering was analyzed: During oxidation and epitaxy, thermal process induced defects, stacking fault and half dislocation loop were caused respectively in silicon wafer back surface.
分析了软损伤吸杂的作用机构 :当热氧化时软损伤诱生热氧化层错 ,当外延生长时软损伤诱生半环形位错 ,硅片表面电活性区的有害杂质被吸收、沉积在这些诱生缺陷上。
2)  damage gettering technology
损伤吸杂工艺
3)  cartilage injury
软骨损伤
1.
Role of 0.5T MRI in diagnosis of articular cartilage injury of knee;
0.5T磁共振诊断膝关节软骨损伤的评价
2.
Observation on treatment of cartilage injury of knee by arthroscope microfracture in 28 cases
关节镜下微骨折术治疗28例膝关节软骨损伤疗效观察
3.
In this article,we will expound the fabrication of tissue engineered cartilage and its application in the cartilage injury and repairing by referring to the results of our research.
本文结合我们近年的研究成果,着重论述组织工程化软骨的构建及其在软骨损伤和修复研究中的应用。
4)  cartilage damage
软骨损伤
1.
Infrared radiation and magnetic field therapy ameliorates cartilage damage in rabbits with knee osteoarthritis;
红外线及磁场对兔膝骨关节炎软骨损伤的影响
5)  articular cartilage lesions
软骨损伤
1.
[Objective]To analyze the characteristics of articular cartilage lesions in knees and evaluate the therapeutic efficacy of microfracture technique under arthroscopy for articular carrtilage lesions.
[目的]分析关节镜下膝关节软骨损伤的特点并探讨采用微骨折术治疗的手术方法和疗效。
2.
To evaluate preliminary results of extracorporeal shock wave therapy (ESWT) and endoscopic-assisted surgical technique for patients suffering from tendinosis and analysis the therapeutic efficacy of microfracture technique under arthroscopy for patients with articular cartilage lesions.
目的:探讨部队官兵和运动员训练伤的发生和分布规律,观察采用体外冲击波和关节镜监视下等离子刀治疗肌腱末端病以及关节镜下微骨折术治疗创伤性关节软骨损伤的疗效,为训练伤的治疗提供更佳方案。
6)  damage softening
损伤软化
1.
The damage evolution equations and yield functions in the model are established on the basis of different deformation behaviours, and both the effects of distortional dilation and damage softening are also included.
在此基础上研究了一维应变波在岩石介质中的传播规律 ,揭示了应力波在岩石类脆性损伤软化材料的传播过程中 ,损伤软化使得材料分为损伤演化区和完全破坏区 ,应力平台在两区交界面处产生凹陷 。
2.
As a result, the granite material is of both strain rate hardening effect and damage softening effect apparently.
在 Hopkinson压杆上利用预留间隙法对花岗岩材料实施了高应变率动态实验 ,有效地避免加载波上升沿对这类脆性材料实验精度的影响 ,发现花岗岩材料有很明显的应变率硬化效应和损伤软化效应。
补充资料:化学性吸入损伤


化学性吸入损伤
chemical inhalation injury

各种化学物质气体以及人造聚合物、塑料等燃烧可产生过氧化氮、盐酸、氢氰酸、光气、一氧化氮、硫化物、醛类等物质均可造成呼吸道吸入性损伤。这些化学物质有些有腐蚀性,如醛类,可引起局部组织严重损伤。有些有严重毒性可致全身中毒,如聚氨酯泡沫塑料燃烧时可释出大量氰化物,氰化物在血清中浓度达100μmol/L即可致死。所以吸入含化学物质的气体或烟雾,除按“吸入性损伤”条目的处理原则处理外,还需注意全身中毒情况的处理。
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