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155篇 您的检索式:作者名="Wayman M"
    题名 作者 年代 出处 被引量
1Ligands of the peroxisome proliferator-activated receptors(PPAR-gamma and PPAR-alpha)reduce myocardial infarct size显示文摘Wayman N S Hattori Y Mcdonald M C 2002FASEB2002,16,9:1
2Phil Mag显示文摘Hwang CM Meichle M Salamon MB Wayman CM 198347:91983,47,:1
3Self-accommodation and shape memory mechanism of ε-Martensite Ⅰ:experimental observations显示文摘YANG J H Wayman C M 1992Mater Characterization1992,28,:1
4Simple diffusion is the primary mechanism for glucose uptake during the production phase of the aspergillus niger citric acid process 显示文摘Wayman F M Mattey M 2000Biotechnology and Bioengineering2000,67,4:1
5Fermentation to ethanol of pentose-containing spent sulphite liquor 显示文摘YU S WAYMAN M PAREKH S K 1987Biotechnology Bioengineering1987,29,:1
6Initial response of a mixed- conifer understory plant community to burning and thinning restoration treatments显示文摘Wayman R B North M 2007Forest Ecology and Management2007,239,13:1
7An activity-regulated microRNA controls dendritic plasticity by down-regulating p250GAP显示文摘Wayman GA Davare M Ando H 2008Proc Nail Acad Sci U S A2008,105,26:1
8Ligands of the peroxisome proliferator-activated receptors ( PPAR-gmnma and PPAR-alpha ) reduce myocardial infarct size显示文摘Wayman N S Hattori Y McDonald M C el al 2002FASEB J2002,16,9:1
9Superelasticity Effects and Stress-Induced Martensitic Transformations in Cu-Al-Ni Alloys 显示文摘Otsuka K Wayman C M Nakai K 1976Acta Metall1976,24,:1
10Characterization of autohydrolysis aspen lignins partl显示文摘Chua MGS and Wayman M 1989Can j Chem1989,57,:1
11The shape memory mechanism associated with the martensitic transformation in Ti-Ni alloys-Ⅱ 显示文摘Miyazaki S Otsuka K Wayman C M 1989Acta Mater1989,37,:1
12Electron microscopy studies of the premartensitic transformation inaaged Ti-Slat% Ni shapememory alloy显示文摘Nishida M Wayman C M 1988Metallography1988,21,:1
13The thermodynamics of interactive co-segregation of phosphorus and alloying elements in iron and temper brittle steels显示文摘Guttmann M Dumoulin P Wayman M 1982Metall Trans A1982,13,10:1
14An activityregulated microRNA controls dendritic plasticity by down-regulating p250GAP显示文摘WAYMAN GA DAVARE M ANDO H 0,,:1
15An activity- regulated mieroRNA controls dendritic plasticity by down- regulating p250GAP显示文摘Wayman GA Davare M Ando H etal 2008Proc Natl Acad Sci U S A2008,105,26:1
16An activity-regulated microRNA controls dendritic plasticity by down-regulating p250GAP显示文摘Wayman GA Davare M Ando H 2008Proc Natl Acad Sci U S A2008,105,26:1
17Characteristics of lath martensite: Part Ⅰ Crytallographic and substructural features显示文摘 Wayman C M 1982Metall Trans A1982,14,:1
18An activityregulated microRNA controls dendritic plasticity by downregulating p250GAP显示文摘Wayman G A Davare M Ando H 2008Proc Natl Aead Sci USA2008,105,26:1
19Electron microscopy studies of precipitation process in near-equiatomic TiNi shape memory alloys显示文摘NISHIDA M WAYMAN C M 0,,:1
20The relation orientation between adjacent martensite laths in an Fe-20%Ni-5%Mn alloy显示文摘 Wayman C M 1980Scripta Metallurgica1980,14,:1
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