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14篇 您的检索式:作者名="Arduine"
    题名 作者 年代 出处 被引量
1Addtion of L-carnitine to additive solution-suspended red cell stored at 40C reduces in vitrohemolysis and improves in vivo viability显示文摘Arduine A Holme S Sweeney JD 0,,:1
2Addition of L- carnitine to additire solutiorr - suspended red cell stored at 40 c reduces in vitro hemolysis and improves in vivoviability 显示文摘Arduine A Holme S Sweeney JD 1997Transfusion1997,37,:1
3French TGV network development显示文摘Arduin J P Ni J 2005Japan Railway& TransportReview402005,2228,:1
4Addition of L-carnitine to additive solution-suspended red cell stored at 40C reduces in vitrohemolysis and improvesin vivoviability 显示文摘Arduine A Holme S Sweeney JD 1997Transfusion1997,37,:1
5French TGV network development显示文摘Arduin J P Ni J 0,,01:1
6French TGV Network Development 显示文摘Arduin J P Ni J 2005Japan Railway & Transport Review2005,40,3:1
7French TGV Network Development显示文摘Arduin J P Ni J 2005Japan Railway & Transport Review2005,40,3:1
8French TGV network development显示文摘Arduin Jean-pievre Jincheng Ni 2005Japan Railway & Transport Review2005,40,3:1
9The impact of deep brain stimulation on executive function in Parkinson' s disease显示文摘Jahanshahi M Arduin CM Brown RG 2000Brain2000,123,:1
10French TGV Network Development显示文摘Arduin J P Ni J 2005Japan Railway & Transport Review2005,40,3:1
11French TGV network development 显示文摘Arduin Jean-pievre Jincheng Ni 2005Japan Railway & Transport Review2005,40,3:1
12Mandibular condyle fractures:evaluation of the Strasbourg Osteosynthesis Research Group classification显示文摘Cenzi R Burlini D Arduin L 2009J craniofac Surg2009,20,1:1
13The impact of deep brain stimulation on executive function in Parkinson' s disease 显示文摘Jahanshahi M Arduin CM Brown RG 2000Brain2000,123,6:1
14Morphological Characterization of Brazil Nut Tree (Bertholletia excelsa) Fruit Pericarp显示文摘This article presents the overall morphological structure of the Brazil nut tree(Bertholletia excelsa)fruit pericarp,from macro to nano scale.The acquired knowledge would be used for the development of new applications,like using the materials as fillers for biocomposites,or as a hierarchical architecture model for biomimetics.This research was performed using stereo and light microscopy and conventional and force field emission scanning electron microscopy.The pericarp presents three layers:the exocarp,a dark gray,brittle and fragile outer layer;the mesocarp,a beige,dry,rigid,impermeable and fibrous intermediate layer;and the endocarp,an inner layer with similar characteristic as the exocarp,but formed next to the seeds.Morphologically,the exocarp and the endocarp presented minor regions of sclereids,fibers and vascular cell bundles,inside major regions of parenchyma cells.The mesocarp presents a structure of fiber cells regions alternating with sclereids and vascular cells regions,arranged in a composite like arrangement,with the fibers cells bundles acting as randomly oriented disperse phases in a sclereid cells matrix.This arrangement was associated with the mesocarp relative superior proprieties,indicating a great material for using as fillers for biocomposites or in biomimetics applications.Gustavo P.Petrechen Marcos Arduin JoséD.Ambrósio 2019Journal of Renewable Materials2019,7,7:0
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