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5篇 您的检索式:作者名="Matthijs Smit"
    题名 作者 年代 出处 被引量
1Defective Intercellular Adhesion Complex in Myocardium Predisposes to Infarct Rupture in Humans显示文摘Susanne W.M. van den Borne Jagat Narula J. Willem Voncken Peter M. Lijnen Helena T.M. Vervoort-Peters Vivian E.H. Dahlmans Jos F.M. Smits Mat J.A.P. Daemen W. Matthijs Blankesteijn 2008Journal of the American College of Cardiology2008,,22:1
2Novel LC–MS/MS method for plasma vancomycin: Comparison with immunoassays and clinical impact显示文摘Matthijs Oyaert Nele Peersman Davy Kieffer Kathleen Deiteren Anne Smits Karel Allegaert Isabel Spriet Johan Van Eldere Jan Verhaegen Pieter Vermeersch Steven Pauwels 2015Clinica Chimica Acta2015,,:1
3The difference between two feature models显示文摘Sypkens Smit Matthijs Bronsvoort Willem F 2007Computer-Aided Design and Applications2007,4,6:1
4Second-Generation Everolimus-Eluting Stents Versus First-Generation Sirolimus-Eluting Stents in Acute Myocardial Infarction显示文摘Sjoerd H. Hofma Jan Brouwer Matthijs A. Velders Arnoud W.J. van’t Hof Pieter C. Smits Michel Queré Cornelis Jan de Vries Adrianus J. van Boven 2012Journal of the American College of Cardiology2012,,5:1
5The P-T-t-D evolution of the Mahabharat,east-central Nepal:The out-of-sequence development of the Himalaya显示文摘A garnet-bearing schist from the southernmost such exposure along the Himalaya in east central Nepal records prograde metamorphism at 32.4±0.3 Ma.Phase equilibria modelling,combined with Ti-in-biotite and quartz caxis thermometry,outline a tight-to-hairpin pressure-temperature(P-T)path extending from~515℃ and 5.5 kbar to peak conditions at~575℃ and 7 kbar followed by deformation during the retrograde phase at 480-515℃ and 6-7 kbar.The new geochronology data place an upper bound on the evolution of metamorphism and deformation in the frontal-most part of the Himalaya,which lasted until 17.5 Ma,as indicated by previously published ^(40)Ar/^(39)Ar data.The P-T-time data from this part of the Himalaya,as well as that from more hinterlandward portions of the orogen,outline a progressive,stepwise,commonly out-of-sequence evolution.Further data from along the orogen indicates that this evolution is not a local phenomenon,but instead characterizes the tectonics of this system as a whole.Kyle P.Larson Sudip Shrestha Mathieu Soret Matthijs Smit 2022Geoscience Frontiers2022,13,2:0
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