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108篇 您的检索式:作者名="Wanjara"
    题名 作者 年代 出处 被引量
1The effect of microstructural characteristics of pearlite on the mechanical properties of hypereutectoid steel显示文摘A.M. Elwazri P. Wanjara S. Yue 2005Materials Science & Engineering A2005,,1:2
2B lymphocytes regulate airway granulocytic inflammation and cytokine production in a murine model of fungal allergic asthma显示文摘到真菌的促进感受性经常导致是特别地困难的临床上设法的气喘的一种严重形式,导致在这些病人的增加的病态和住院。尽管 B 淋巴细胞可能通过 IgE 的生产加重气喘症状,这些房间可能也在对吸入的真菌的保护的反应是重要的。通过 cytokine 版本和 T 房间相互作用,这些淋巴细胞可能也影响航线墙纤维变性的发展和维护。J H −/− 老鼠为抗体的重链部件缺乏 JH 基因,它为 B 房间功能和幸存是批评的。这些动物在很多有免疫力的回答便于 B 淋巴细胞的角色的说明;然而, J H −/− 老鼠没被用来学习真菌的过敏症。在这研究,我们用曲霉属菌 fumigatus 检验了 B 淋巴细胞的角色模仿被环境真菌的暴露触发的人的航线疾病的鼠科的真菌的高空过敏症模型。我们在敏化的野类型的 BALB/c 和 J 暴露于的 H −/− 老鼠重复了真菌的暴露并且没在大航线附近在航线 hyperresponsiveness,全面肺的发炎或骨胶原免职发现差别。然而, Th2 类型 cytokines IL-4 和 IL-13 的层次显著地在 J 相对 BALB/c 控制的 H −/− 鼠标。由对比,煽动性的 cytokines IL-17A 和 IL-6 的层次显著地在 J H −/− 动物,并且有显著地更柔韧的航线嗜曙红血球过多和 neutrophilia 比在控制动物。一起拿,这些调查结果表明淋巴细胞帮助在肺的分隔空间调整 granulocytic 回答到真菌的暴露的那 B。Sumit Ghosh Scott A Hoselton Scott V Asbach Breanne N Steffan Steve B Wanjara Glenn P Dorsam Jane M Schuh 2015Cellular & Molecular Immunology2015,12,2:2
3Titanium-based composites produced by powder metallurgy 显示文摘Wanjara P Yue S Drew R A L 1997Key Eng Mater1997,,:2
4Tatanium based composites produced by powder metallurgy显示文摘Wanjara P Yue S Drew R A L 1997Key Eng Mater1997,,:1
5Dynamic recrystallization of austenite in mieroalloyed high carbon steels 显示文摘Elwazri A M Wanjara P Yue S 2003Materials Science and Engineering2003,339,:1
6Linear friction welding of Ti- 6Al-4V: processing, microstructure, and mechanical property inter-relationships 显示文摘WANJARA P JAHAZI M 2005Metallurgical and Materials Transaction ( A )2005,36,8:1
7Linear friction welding of Ti-6Al-4V:pro-cessing,microstructure,and mechanical-property inter-relationships显示文摘Wanjara P Jahazi M 2005Metallurgical and Materials Transactions2005,36,8:1
8Linear friction welding of Ti-6Al-4V: processing, microstructure, and mechanical property inter-relationships显示文摘Wanjara P Jahazi M 2005Metallurgical and Materials Transactions2005,36,:1
9Hot Working Behavior of Near α Alloy IMI834显示文摘WANJARA P JAHAZI M MONAJATI H 2005Journal of Materials Science and Engineering A2005,396,:1
10Linear friction welding of Ti-6Al-4V: Processing, microstructure, and mechanical-property inter-relationships显示文摘P. Wanjara M. Jahazi 2005Metallurgical and Materials Transactions A2005,,8:1
11A study of linear fric-tion weld microstracture in single crystal CMSX -486 super-alloy 显示文摘Ola 0 T Ojo O A Wanjara P 2012Metallurgical and Materials Transactions A2012,43,:1
12Hot working behavior of near-ct alloy IMI834 显示文摘Wanjara P Jahazi M Monajati H Yue S Immarigeon J P 2005Materials Science and Engineering A2005,396,:1
13Characterization of electron beam welded AA2024 显示文摘Wanjara P Brochu M 2010ContentsListsAvailableatScienceDireetVacuum2010,85,:1
14Linear friction welding of Ti -6A1-4V :pro- cessing,microstrueture and medieal-property inter -relationships 显示文摘Wanjara P Jahazi M 2005Metallurgical and Materials Transactions2005,36,8:1
15Linear friction welding of Ti-6Al-4V:processing,microstructure,and mechanical-property interrelationships显示文摘Wanjara P Jahazi M 0,,08:1
16Hybrid fiber laser - Arc welding of thick section high strength low alloy steel 显示文摘Cao X Wanjara P Huang J 2011Materials and Design2011,,32:1
17Hot working behavior of near-αalloy IMI834显示文摘Wanjara P Jahazi M Monajati H 0,,:1
18Influence ofthermomechanical processing on microstructural evolu-tion in near-αalloy IMI834显示文摘Wanjara P Jahazi M Monajati H 2006Materials Science andEngineering A2006,416,12:1
19Linear Friction Welding of Ti-6Al-4V:Processing,Microstructure,and Mechanical-Property Inter-Relationships显示文摘Wanjara P Jahazi M 2005Metallurgical and materials transactions2005,36,8:1
20The effect of microstructural characteristics of pearlite on the mechanical properties of hypereutectoid steel 显示文摘Elwazri A M Wanjara P Yue S 2005Materials Science and Engineering A2005,404,:1
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