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81.
文章结合笔者近年来的工作实践,从建筑设计因素入手,分析和阐述了建筑设计的几种方法,并提出了自己的一些看法. 相似文献
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A two-tier location management mechanism for IMS 总被引:1,自引:0,他引:1
曹予飞 《高技术通讯(英文版)》2009,15(2):155-161
This paper proposed a two-tier location management mechanism(TTLM)by improving the currentregistration mechanism(CR)in IP Multimedia Subsystem(IMS).The TTLM includes the visited networkregistration and the home network registration,in which the visited network registration is responsible forre-registration in IMS.When subscriber roams,the location information of home network will be updatedby the visited network based on the change of user equipment(UE)' s IP address.Therefore the TTLMcan reduce the tim... 相似文献
84.
The Wnt/beta-catenin/TCF4 pathway plays critical roles in the maintenance of small intestinal epithelium; however, downstream
targets of the beta-catenin/TCF4 complex are not extensively characterized. We identified miR-30e as an immediate target activated
by the beta-catenin/TCF4 complex. miR-30e was detected in the peri-nuclear region of the intestinal crypt IEC-6 cells. Bioinformatics
analysis revealed clustered beta-catenin/TCF4 binding sites within the miR-30e promoter region. This promoter region was cloned
into pGL3-control luciferase reporter vector, with the enhancer region removed. Transfection of pCMV-SPORT6-beta-catenin expression
vector dose-dependently increased luciferase activity, and co-transfection of pCMV-SPORT6-TCF4 expression vector further enhanced
the promoter activity. Dexamethasone-induced IEC-6 cells differentiation caused a 2.5-fold increase in miR-30e expression,
and upon beta-catenin siRNA transfection, miR-30e increased 1.3-fold. Electrophoretic mobility shift assay and chromatin immunoprecipitation
assay confirmed the binding between beta-catenin/TCF4 complexes from IEC-6 nuclear extracts and the putative sequences in
the miR-30e promoter. These results demonstrate that beta-catenin/TCF4 transactivates miR-30e during intestinal cell differentiation. 相似文献
85.
XiaoTao Wang YingKui Yang ZhiFang Yang YongGui Liao Wei Zhang XiaoLin Xie 《科学通报(英文版)》2010,55(30):3441-3447
By means of distillation precipitation polymerization, the silica-hybrid particles with polyazobenzene shell (PAzo@SiO2) micro-spheres were prepared with 6-(4-methoxy-4′-oxy-azobenzene) hexyl methacrylate (Azo-M) as monomer, divinylbenzene (DVB) as cross-linker, and ~250 nm vinylated sol-gel silica particles as template. Hollow polyazobenzene microspheres were further developed after selective removal of the silica cores with HF solution. When the content of DVB related to Azo-M is 20 wt%, the acetonitrile is 200 mL, and the polymerization time is 4.5 h, the hollow PAzo microspheres with about 20 nm shell are successfully fabricated. These hollow PAzo microspheres have excellent reversible photoisomerization, and their first-order rate constant of trans-cis isomerization only decreases 11.8% compared with homopolymer of azobenzene (Homo-PAzo). 相似文献
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广西北部处于云贵高原东南边缘,南部濒临北部湾,因而形成了广西的特色气候.文章通过分析风速的影响因素,结合广西气候特征,提出在广西能够形成较好风能资源的地形特征,并提出广西风电场选址的三类重点区域,为风电场选址提供依据. 相似文献
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登录注册页几乎是各个正规网站的访问起始页,这是出于网站安全考虑,也是各公司企业为方便管理众多客户所必需。本文以C#+SQL Server为基础设计了一个通用的注册模块,此模块可方便实现在页间传递参数或数据,具有较高实用性。 相似文献
90.
The characterization of reactive solid-liquid interfacial energies and solid surface energies is a pressing problem in materials science and surface science. Based on the concept that unbalanced forces doing work, a mathematical formulation between surface energies and interfacial energies for reactive wetting is presented. The resulting formalism has significant generality in which the equilibrium Young’s equation for solid-liquid interfacial energies is just a special case. It is shown that a solid-liquid interfacial energy at non-equilibrium is always higher than that at equilibrium, and that the transformation of reactive interfaces to equilib-rium interfaces is an inevitable, spontaneous process. The numerical range of solid-liquid interfacial energies γsl for a limited, solid-liquid interfacial wetting system was calculated to be 0 ≤γsl ≤γsg. The calculation methods for reactive solid-liquid interfacial energies and solid surface energies are presented. They are significant for composite materials and weld, powder sinter, package of electronic devices, and other surface and interfacial issues in metallurgy. 相似文献