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A cell-centered lagrangian scheme in two-dimensional cylindrical geometry 被引量:4
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作者 SHEN ZhiJun YUAN GuangWei +1 位作者 YUE JingYan LIU XueZhe 《Science China Mathematics》 SCIE 2008年第8期1479-1494,共16页
A new Lagrangian cell-centered scheme for two-dimensional compressible flows in planar geometry is proposed by Maire et al.The main new feature of the algorithm is that the vertex velocities and the numerical fluxes t... A new Lagrangian cell-centered scheme for two-dimensional compressible flows in planar geometry is proposed by Maire et al.The main new feature of the algorithm is that the vertex velocities and the numerical fluxes through the cell interfaces are all evaluated in a coherent manner contrary to standard approaches.In this paper the method introduced by Maire et al.is extended for the equations of Lagrangian gas dynamics in cylindrical symmetry.Two different schemes are proposed,whose difference is that one uses volume weighting and the other area weighting in the discretization of the momentum equation.In the both schemes the conservation of total energy is ensured,and the nodal solver is adopted which has the same formulation as that in Cartesian coordinates.The volume weighting scheme preserves the momentum conservation and the area-weighting scheme preserves spherical symmetry.The numerical examples demonstrate our theoretical considerations and the robustness of the new method. 展开更多
关键词 Lagrangian hydrodynamics cylindrical coordinate cell centered area weighting 76N15 76M12
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The National Natural Science Foundation of China and the Epithelial Cell Biology Research Center
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作者 Hsiao Chang Chan(Epithelial Cell Biology Research Center, The Chinese University of HongKong, Shatin, HongKong) 《Science Foundation in China》 CAS 2002年第1期59-60,共2页
Although it has been only a couple of years since the establishment of the Epithelial Cell Biology Research Center, the first of its kind ever founded in China , the planning for the center establishment and the invol... Although it has been only a couple of years since the establishment of the Epithelial Cell Biology Research Center, the first of its kind ever founded in China , the planning for the center establishment and the involvement of the National Natural Science Foundation of China (NSFC) goes way back to more than 展开更多
关键词 cell RE NSFC The National Natural Science Foundation of China and the Epithelial cell Biology Research Center
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A Recombinant Rabies Virus Expressing Fms-like Tyrosine Kinase 3 Ligand(Flt3L) Induces Enhanced Immunogenicity in Mice 被引量:5
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作者 Yachun Zhang Jie Yang +4 位作者 Mingming Li Min Cui Zhen FFu Ling Zhao Ming Zhou 《Virologica Sinica》 SCIE CAS CSCD 2019年第6期662-672,共11页
Rabies is a zoonotic disease that still causes 59,000 human deaths each year,and rabies vaccine is the most effective way to control the disease.Our previous studies suggested that the maturation of DC plays an import... Rabies is a zoonotic disease that still causes 59,000 human deaths each year,and rabies vaccine is the most effective way to control the disease.Our previous studies suggested that the maturation of DC plays an important role in enhancing the immunogenicity of rabies vaccine.Flt3L has been reported to own the ability to accelerate the DC maturation,therefore,in this study,a recombinant rabies virus expressing mouse Flt3L,designated as LBNSE-Flt3L,was constructed,and its immunogenicity was characterized.It was found that LBNSE-FU3L could enhance the maturation of DC both in vitro and in vivo,and significantly more TFH cells and Germinal Center B(GC B)cells were generated in mice immunized with LBNSE-FU3L than those immunized with the parent virus LBNSE.Consequently,expressing of Flt3L could elevate the level of virus-neutralizing antibodies(VNA)in immunized mice which provides a better protection from a lethal rabies virus challenge.Taken together,our study extends the potential of Flt3L as a good adjuvant to develop novel rabies vaccine by enhancing the VNA production through activating the DC—Tfh^GC B axis in immunized mice. 展开更多
关键词 RABIES Vaccine FMS-like tyrosine kinase 3 ligand(Flt3L) Dendritic cell(DC) Follicular helper T cell(TFH cell) Germinal center B cell
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