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13篇 您的检索式:作者名="Shen NJ"
    题名 作者 年代 出处 被引量
1miR-204 inhibits epithelial to messenchymal tromsition by targeting slug in intrahepatic cholomgio carcinoma cells显示文摘Qiu YH Wei YP Shen NJ et ai 2013Cell Phgsiol Biochem2013,32,5:1
2Using methylprednisolone to supplement direct current electrical field in promoting spinal cord regeneration显示文摘Shen NJ Wang YT Lin QB 2005J Reconstr Microsurg2005,21,4:1
3miR-204 inhibits epithelial to mesenehymal transition by targeting slug in intrahepatlc eholangioeareinoma ceils 显示文摘Qiu YH Wei YP Shen Nj et at 2013Cell Physiol Biochem2013,32,5:1
4Using methylprednisolone to supplement direct current electrical field in promoting spinal cord regeneration 显示文摘Shen NJ Wang YT Lin QB 2005J Reconstr Microsurg2005,21,4:1
5Using methylprednisolone to supplement direct current electrical field in promoting spinal-cord regeneration显示文摘Shen NJ Wang YT Lin QB 2005J Reconstr Microsurg2005,21,4:1
6The role of glia in retinal vas- cular disease显示文摘Coorey NJ Shen W Chung SH 2012Clin Exp Optom2012,95,3:1
7The role of glia in retinal vascular disease显示文摘Coorey NJ Shen W Chung SH 2012Clin Exp Optom2012,95,3:1
8The role of gila in retinal vascular disease 显示文摘Coorey NJ Shen W Chung SH 2012Clin Exp Optom2012,95,:1
9Dual transcriptional acti-vator and repressor roles of TBX20 regulate adult cardiacstructure and function显示文摘Sakabe NJ Aneas I Shen T 2012Hum Mol Gene2012,21,10:1
10Optical coherence tomography as an adjunct to white light cystoscopy for intravesical real-time imaging and staging of bladder cancer显示文摘Goh AC Tresser NJ Shen SS 2008Urology2008,72,1:1
11c-los expression as a marker of cen- tral cardiovascular neurons显示文摘Dun NJ Dun SL Shen E 1995Biol Signals1995,4,:1
12Using methylprednisolone to supplement direct current electrical field in promoting spinal-cord regeneration显示文摘Shen NJ Wang YT Lin QB 2005J Reconstr Microsurg2005,21,4:1
13HYDROGEN DISPLACEMENT OF CHEMISORBED CO FROM THE Ni(100) SURFACE显示文摘We report the first observation of hydrogen induced displacement of chemisorbed CO from the Ni(100) surface. This displacement is unexpected since the heat of adsorption for CO is 126 kJ/mole, about 30 kJ/mole larger than the 96 kJ/mole heat of adsorption for hydrogen, Rates of displacement were measured by Fluorescence Yield Near Edge Spectroscopy (FYNES) and Temperature Programmed Desorption (TPD). Excellent agreement is observed between both methods. Hydrogen pressures in the 10-4 to 10-1 Torr range cause displacement of chemisorbed CO in the 270 to 330 K temperature range in a matter of minutes. The displacement reaction is clearly positive order in CO coverage. The CO coverage data suggested two first order reaction regions with a decrease in rate with decreasing coverage. Displacement is about half order in hydrogen pressure. The activation energy for the high coverage displacement rate is approximately 29±4 kJ/mole while the activation energy for the low coverage displacement rate aboutShen Shikong(Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000. China)John L. Gland (Corporate Research, Exxon R. & E. Co., Annandale, NJ 08801)Dan A. Fisher (NSLS-Brookhaven National Lab., Upton, NY 11973)Francisco Zaera (Chemistry Dept., University of California/ Riverside, CA 92521) 1990分子催化1990,4,S1:0
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