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10篇 您的检索式:作者名="Kaesler"
    题名 作者 年代 出处 被引量
1Gli genes and limb development显示文摘Thomas Theil Susanne Kaesler Lars Grotewold Jens B?se U. Rüther 1999Cell & Tissue Research1999,,1:1
2Suppression of casein kinase1alpha in melanoma cells induces a switch in beta-catenin signaling to promote metastasis显示文摘Sinnberg T Menzel M Kaesler S 2010Cancer Res2010,70,17:1
3Engineering Development of a Directed IR Countermeasure Laser显示文摘 Margaret Law Mick Kaesler 2004Proceedings of SPIE2004,5615,:1
4Suppression of casein kinase lalpha in melanoma ceils induces a switch in beta-catenin signaling to promote metastasis 显示文摘Sinnberg T Menzel M Kaesler S 2010Cancer Res2010,70,17:1
5Human epithelial ceils estab- lish direct antifungal through TLR4-mediated signaling 显示文摘WEINDL G Naglik JR Kaesler S 2007J Clin Invest2007,117,12:1
61,25 dihydroxy- vitamin-D3 attenuates the confluence-dependent differences in the osteoblast characteristic proteins alkaline phosphatase, procollagon I peptide, and osleocalcin 显示文摘Siggelkow H Schulz H Kaesler S 1999Caleif Tissue Int1999,64,5:1
7A novel balance exercise program for postural stability in older adults: A pilot study显示文摘D.S. Kaesler R.B. Mellifont P. Swete Kelly D.R. Taaffe 2006Journal of Bodywork & Movement Therapies2006,,1:1
8Warfarin induces cardiovascular damage in mice显示文摘Krtiger T Oelenberg S Kaesler N 2013Arteriosclcr Thromb Vasc Biol2013,33,11:1
9Warfarin Induces Cardiovascular Damage in Mice显示文摘Thilo Krüger Stephan Oelenberg Nadine Kaesler Leon J. Schurgers Annette M. van de Sandt Peter Boor Georg Schlieper Vincent M. Brandenburg Bertalan C. Fekete Verena Veulemans Markus Ketteler Cees Vermeer Willi Jahnen-Dechent Jürgen Floege Ralf Westenfeld 2013Arteriosclerosis Thrombosis and Vascular Biology2013,,11:1
10Introducing 3D-potting:a novel production process for artificial membrane lungs with superior blood flow design显示文摘Currently,artificial-membrane lungs consist of thousands of hollow fiber membranes where blood flows around the fibers and gas flows inside the fibers,achieving diffusive gas exchange.At both ends of the fibers,the interspaces between the hollow fiber membranes and the plastic housing are filled with glue to separate the gas from the blood phase.During a uniaxial centrifugation process,the glue forms the“potting.”The shape of the cured potting is then determined by the centrifugation process,limiting design possibilities and leading to unfavorable stagnation zones associated with blood clotting.In this study,a new multiaxial centrifugation process was developed,expanding the possible shapes of the potting and allowing for completely new module designs with potentially superior blood flow guidance within the potting margins.Two-phase simulations of the process in conceptual artificial lungs were performed to explore the possibilities of a biaxial centrifugation process and determine suitable parameter sets.A corresponding biaxial centrifugation setup was built to prove feasibility and experimentally validate four conceptual designs,resulting in good agreement with the simulations.In summary,this study shows the feasibility of a multiaxial centrifugation process allowing greater variety in potting shapes,eliminating inefficient stagnation zones and more favorable blood flow conditions in artificial lungs.Fellx Hesselmann Jannls M.Focke Peter C.Schlansteln NIklas B.Steuer Andreas Kaesler Sebastlan D.Relnartz Thomas Schmltz-Rode Ulrlch SteInselfer Sebastlan V.Jansen Jutta Arens 2022Bio-Design and Manufacturing2022,5,1:0
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