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19篇 您的检索式:作者名="Felmy"
    题名 作者 年代 出处 被引量
1Thermodynamic model for the solubility of PuO2(am) in the aqueous K+-HCO-3-CO2-3-OH--H2O system显示文摘Rai D Hess N J Felmy A R 1999Radiochim Acta1999,86,:1
2An aqueous thermodynamics model for polymerized silica species to high ionic strength显示文摘FELMY A R CHO H RUSTAD J R 2001J Solut Chem2001,30,6:1
3Cellular basis of Alzheimer's disease显示文摘Bali J Halima SB Felmy B 2010Ann Indian Acad Neurol2010,13,2:1
4The influence of edge sites on the development of surface charge on goethite nanoparticles: A molecular dynamics investigation显示文摘James R. Rustad Andrew R. Felmy 2005Geochimica et Cosmochimica Acta2005,,6:1
5The contribution of the three columns of the spine to rotational stability: a biomechaniceal model 显示文摘Haher TR Felmy W Baruch H 1989Spine1989,14,7:1
6Development and modulation of in- trinsic membrane properties control the temporal precision of auditory brain stem neurons显示文摘FRANZEN DL GLEISS SA BERGER C KOMPFBECK FS AMMER J J FELMY F 2015J Neurophysiol2015,113,2:1
7The prediction of borate mineral equilibria in nature waters: application to Sear|s Lake, California 显示文摘FELMY A R WEARE J H 1986Geochim Cosmochim Acta1986,50,12:1
8Thremodynamic Model for the Solubility of PuO2(am) in the Aqueous K-HCO-3-CO23-OH-H2O System显示文摘Rai D Hess N J Felmy A R 1999Radiochimica Acta1999,86,:1
9Molecular statics calculations of proton binding to geothite surfaces: thermodynamic modeling of the surface charging and protonation of goethite in aqueous solution显示文摘Felmy A R Rustad J R 1998Geochemica Cosmochemica Acta1998,62,:1
10Molecular statics calculation for iron oxide and oxyhydroxide minerals:Toward a flexible model of the reactive mineral-water interface显示文摘Rustad J R Felmy A R Hay B P 0,,:1
11Molecular statics calculations of proton binding to goethite surfaces:thermodynamic modeling of the surface charging and protonation of goethite in aqueous solution显示文摘Felmy A R Rustad J R 0,,:1
12Cellular basis of Alzheimer' s disease显示文摘Bali J Halima SB Felmy B 2010Ann Indian Acad Neurol2010,13,2:1
13The solubility product of crystalline ferric selenite hexahydrate and the complexation constant of FeSeO3^+ 显示文摘Rai D Felmy A R Moore D A 1995Journal of Solution Chemical1995,24,:1
14Density functional theory study of water adsorption on FeOOH surfaces显示文摘KERIST S FELMY A R ILTON E S 2011Environmental Science Technology2011,45,:1
15Parvalbumin Is a Mobile Presynaptic Ca^2+ Buffer in the Calyx of Held that Accelerates the Decay of Ca^2+ and Short term Facilitation显示文摘Muller M Felmy F Schwaller B 2002J Neurosci (S0270--6474)2002,27,9:1
16The contributionof the three columns of the spine to rotational stability:abiomechanical model显示文摘Haher TR Felmy W Baruch H 0,,:1
17The prediction of borate mineralequilibria in natural waters:Application to Searles Lake,California显示文摘Felmy A R Weare J H 1986Geochimica et Cosmochimica Acta1986,50,27:1
18Probing the intracellular calcium sensitivity of transmitter release during synaptic facilitation显示文摘FELMY F NEHER E SCHNEGGENBURGER R 2003Neuron2003,37,:1
19高亲和力IgA通过束缚生长中的细菌保护肠道显示文摘疫苗诱导的高亲和力IgA可以直接中和毒力因子或通过某种机制在物理上阻碍细菌与肠道组织的相互作用来抵御肠道致病菌感染(免疫排斥)。IgA介导肠腔内细菌的交联成团,对预防非伤寒感染肠炎沙门氏菌亚种(美国沙门氏菌感染)至关重要。然而,传统的凝集反应只对高密度致病菌有效(≥108非运动性细菌/g)。而在典型的感染,肠腔内细菌密度极低且快速分裂(100~107菌落/g)。本研究中,我们在活体上揭示一个不同的促使细菌团块的形成的物理过程:IgA介导的交联束缚子细胞可以防止它们分裂成子细胞后的分离,且细菌伴随增长凝聚成团。这个过程在所有现实的病原菌密度环境下均有效,细菌密度增长还能有效和快速清除肠腔病原体。此外,IgA还能使质粒的供体细菌和受体细菌分成单独的细菌簇,防止质粒在体内接合转移。因此,刺激细菌增长是保护肠道的一种机制:IgA在非高致病菌密度、炎症或杀死细菌情况下可以解除和清除肠腔内潜在的入侵物种。此外,我们的研究结果显示了口服疫苗在抗微生物传播方面有潜在的可能。黎梦 Moor K. Diard M. Sellin M.E. Felmy B. Wotzka S.Y. Toska A. Bakkeren E. Arnoldini M. Bansept F. Co A.D. 2018广东饲料2018,27,2:0
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