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28篇 您的检索式:作者名="MarkA"
    题名 作者 年代 出处 被引量
1Laparoscopic Versus Open Appendectomy for Complicated and Uncomplicated Appendicitis inChildren显示文摘Marka SR Blackburn S Cobb R ct al 2012J Gastrointest Surg2012,16,10:1
2Complex sympletie geometry with applications to ordinary differential operators显示文摘EVERITT W N MARKAS L 1999Transactions of The American Mathematical Society1999,351,12:1
3Studies on modeling and simulation of lactose hydrolysis by free and immobilized β-galaetosidase from Aspergillus niger 显示文摘PAPAYANNAKOS N MARKAS G KEKOS D 1993Chem Eng J Biochem Eng J1993,5,1:1
4Complex symplectic geometry with applications to ordinary differential operators 显示文摘Everitt W N Markas L 1999Transactions of the Amerian Mathematic Society1999,351,12:1
5使用新型双探头地层测试器与取样工具实时测量地层渗透率及各向异性特性显示文摘使用双探头地层测试器,可以用两种新方法确定地层水平渗透率和各向异性。这种压力测试技术的关键是在获取压力数据的过程中进行实时解释。从最基本的理论引申出一种考虑存储效应的新型双探头各异性模型。以前,地层压力的瞬态解释可在拉普拉斯变换中进行,还近似存在于核测井技术的时间域内。在本文中,通过拉普拉斯反变换产生一个精确的时间域解析解,从而使实时地层参数能够更准确地相互匹配。第二项技术使用震荡或揩振源。在此技术中,两探头之间压力脉冲的相位差用来渗透率和各向异性特征。这项技术在高渗透性地层或探头间距过大而使第二检测探头的信号变得很微弱时尤其重要。这种测量脉冲的时间差比检测其幅度更精确,这样就扩大了渗透率和各向异性特性的测量范围。本文介绍了用有限元双探测器模型得到的模拟结果与方法结合起来评价近井参数(如泥饼效应,探测器和封隔器尺寸)的方法。还包括现场测试结果以及这种测试方法的执行过程。尤其重要的是,结果显示当用岩心分析方法来指示流型的时候,检测到的渗透率和各向异性特性将随流型的变化而变化。MarkA,Proerr 罗执光 2001测井与射孔2001,,3:1
6The effect of stocking density on growth, metabolism and ammonia-N excretion during larval ontogeny of the spiny lobster Sagmariasus verreauxi显示文摘MARKA J QUINN P F CHRIS G C 2013Aquaculture2013,37,:1
7Random laser in one dimension 显示文摘BURINAL RATNER MARKA CAOH etal 2002PhysRevLett2002,88,09:1
8Induction of heme oxygenase-1 modulates the profibrotic effects of transforming growth factor-beta in human renal tubularepithelial cells 显示文摘MarkA Hock T Kapturczak MH etal 2005Cell MolBiol (Noisy-le-grand)2005,51,:1
9Quad tree structures for image compression applications 显示文摘Markas T Reif J 1992Information Processing Management1992,28,6:1
10Chemical demulsification of petroleum emulsions using oil-soluble demulsifiers 显示文摘MarkA K Darsh T W Chandrashekar S S 1991Ind Engng Res1991,30,:1
11Emulsion polymerization with 2-acrylamido - 2 - methylpropanesulphonic acid 显示文摘GEOFFREY P MARKA BELPER ALAN C CLARK 1998Polymer Preprints1998,39,1:1
12Complex symp--lectic geometry with applications to ordifferential operators显示文摘Everitt W N Markas L 1999Transactions of the American mathematical society1999,351,12:1
13Correct wave-front by using DM显示文摘MarkA Ealey 1996Laser Focus World1996,,12:1
14Cyclodextrin-Enhanced Electrokinetic Removal of Phenanthrene from a Model Clay Soil显示文摘Seok O Marka S Elizabethr C 2000Environmental Science and Technology2000,34,:1
15Hepatitis B vi- rus infeetion and waste colleetion:Prevalenee, risk faetors, and infection pathway显示文摘Raehiotis G Papagiannis D Markas D 2012Am J Ind Med2012,55,7:1
16Cyanide and Its Relationship to Nervous Suffering. Physiopathological Aspects of Intoxication显示文摘M. Vincent F. Vincent C. Marka J. Faure 1981Clinical Toxicology1981,,12:1
17Comparative study of voltammetric behaviour of guanine at carbon paste and glassy carbon electrodes and its determination in purine mixtures by differential-pulse voltammetry 显示文摘MARKAS A T GILMARTIN JOHN P H 1992Analyst1992,117,:1
18The power of real time PCR显示文摘Marka A Valasek Joyce J Repa 2005Advances in physiology education2005,29,3:1
19TLR7 is in-volved in sequence- specific sensing of single-stranded RNAs in hu-man macrophages显示文摘MichaelP Gantier Stephen Tong MarkA Behlke 2008J Immunol2008,180,4:1
20Kinetic analysis of the antibacterial activity of probiotic lactoba-cilli towards Salmonella enterica serovar Typhimurium reveals a rolefor lactic acid and other inhibitory compounds显示文摘MARKAS L TRIANTAFYLLOU V FAYOL - MESSAOUDI D etal 2006Res Microbiol2006,157,3:1
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