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10篇 您的检索式:作者名="J.Bauer"
    题名 作者 年代 出处 被引量
1Characterization of lactobacilli towards their use as probiotic adjuncts in poultry显示文摘M.A.Ehrmann P.Kurzak J.Bauer R.F.Vogel 2002Journal of Applied Microbiology2002,,5:1
2Alvimopan and COX‐2 inhibition reverse opioid and inflammatory components of postoperative ileus显示文摘J.Schmidt B.Stoffels A.Nazir D. L.Dehaven‐hudkins A. J.Bauer 2008Neurogastroenterology & Motility2008,,:1
3Structural arrangements of the ternary metal boride carbide compounds MB2C4 (M = Mg, Ca, La and Ce) from first-principles theory显示文摘C.M.Fang J.Bauer J.Y.Saillard J.F.Halet 0,,09:1
4Hydrogen Inhalation Ameliorates Oxidative Stress in Transplantation Induced Intestinal Graft Injury显示文摘B. M.Buchholz D. J.Kaczorowski R.Sugimoto R.Yang Y.Wang T. R.Billiar K. R.McCurry A. J.Bauer A.Nakao 2008American Journal of Transplantation2008,,10:1
5Characterization of lactobacilli towards their use as probiotic adjuncts in poultry显示文摘Ehrmann M A P.Kurzak J.Bauer 0,,05:1
6解释结核分枝杆菌DNA指纹簇显示文摘许多研究已在其结核分枝杆菌分离株共享DNA指纹的基础上定义了患者簇。成簇相当于最近的传播,并且对伴随结核分枝杆菌正在高度传播人群亚组来说,与成簇有关的因素已作为指标被找出。在进行和解释这些研究中值得考虑的提醒应予以注意。例如,根据标志物的稳定性和长时间在人群中的菌株数量,某些并非近期传播的原因使菌株组可能完全相同。如果病例对特定人群是新移民或在研究中不是所有人群中的病例都被包括的话,确定由近期传播引发的病例可能不作为成簇被见到。所见的成簇数量将根据研究持续的时间。 在研究的设计、所包括病例的比例、补充和所使用成簇的界定上,研究应给出精确的资料。成簇的数据应至少被年龄、性别和移民状况分开。为了最大的获得信息,研究应涉及一个人群中所有病例的高比例、与传统的流行病学接触调查结合进行(如果可能的话)、并且提供人群中结核病发病资料和患者的年龄、性别、人类免疫缺损病毒状况、耐药性及社会和种族组资料。关键词:结核病;分子流行病学;DNA指纹;RFLP;传播;J.R.Glynn J.Bauer A.S.deBoer M.W.Borgdorff P.E.M.Fine P.Godfrey-Faussett E.Vynnycky 丁北川 2000国际结核病与肺部疾病杂志2000,0,1:0
7含植物油和亲脂性维生素的纤维素纤维新应用显示文摘纤维素的干湿法成形为再生纤维材料的物理、化学功能化提供了独特的选择。这使得基于功能纤维素的新型纤维在20世纪得以成功研发,并在市场上商业化,市场也对含有液体或可熔性亲脂化合物的纤维提出了新需求。图林根纺织和塑料研究所(TITK)最近研发了一种包含永久性嵌入植物油或维生素的纤维素纤维,它们将打开护肤纺织品新的应用篇章。F.Meister M.Krieg J.Bauer M.Sellin P.Brückner 赵华蕾 2014国际纺织导报2014,0,11:0
8利用双电极装置提高等电聚焦通量显示文摘在最大电压12 000 V下操作,蛋白质在固定pH梯度(IPGs)上的等电聚集(IEF)可以在3 h内完成。采用改装的电极装置,将两电极对通过线路并联,可使IEF的通量加倍。、与常规的单电极对相比,成对的IPGs的电压梯度几乎一致,并在大致两倍的电流下运行,IEF可在大致相同的时间内完成。Gary B.SMEJKAL Darren J.BAUER 2011生命科学仪器2011,9,6:0
9Single-pulse real-time billion-frames-per-second planar imaging of ultrafast nanoparticle-laser dynamics and temperature in flames显示文摘Unburnt hydrocarbon flames produce soot,which is the second biggest contributor to global warming and harmful to human health.The state-of-the-art high-speed imaging techniques,developed to study non-repeatable turbulent flames,are limited to million-frames-per-second imaging rates,falling short in capturing the dynamics of critical species.Unfortunately,these techniques do not provide a complete picture of flame-laser interactions,important for understanding soot formation.Furthermore,thermal effects induced by multiple consecutive pulses modify the optical properties of soot nanoparticles,thus making single-pulse imaging essential.Here,we report single-shot laser-sheet compressed ultrafast photography(LS-CUP)for billion-frames-per-second planar imaging of flame-laser dynamics.We observed laser-induced incandescence,elastic light scattering,and fluorescence of soot precursors-polycyclic aromatic hydrocarbons(PAHs)in real-time using a single nanosecond laser pulse.The spatiotemporal maps of the PAHs emission,soot temperature,primary nanoparticle size,soot aggregate size,and the number of monomers,present strong experimental evidence in support of the theory and modeling of soot inception and growth mechanism in flames.LS-CUP represents a generic and indispensable tool that combines a portfolio of ultrafast combustion diagnostic techniques,covering the entire lifecycle of soot nanoparticles,for probing extremely short-lived(picoseconds to nanoseconds)species in the spatiotemporal domain in non-repeatable turbulent environments.Finally,LS-CUP’s unparalleled capability of ultrafast wide-field temperature imaging in real-time is envisioned to unravel mysteries in modern physics such as hot plasma, sonoluminescence, and nuclear fusion.Yogeshwar Nath Mishra Peng Wang Florian J.Bauer Yide Zhang Dag Hanstorp Stefan Will Lihong V.Wang 2023Light(Science & Applications)2023,12,3:0
10Magnetic field sensors using arrays of electrospun magnetoelectric Janus nanowires显示文摘The fabrication and characterization of the first magnetoelectric sensors utilizing arrays of Janus magnetoelectric composite nanowires composed of barium titanate and cobalt ferrite are presented.By utilizing magnetoelectric nanowires suspended across electrodes above the substrate,substrate clamping is reduced when compared to layered thin-film architectures;this results in enhanced magnetoelectric coupling.Janus magnetoelectric nanowires are fabricated by sol–gel electrospinning,and their length is controlled through the electrospinning and calcination conditions.Using a directed nanomanufacturing approach,the nanowires are then assembled onto pre-patterned metal electrodes on a silicon substrate using dielectrophoresis.Using this process,functional magnetic field sensors are formed by connecting many nanowires in parallel.The observed magnetic field sensitivity from the parallel array of nanowires is 0.514±.027mV Oe^(−1) at 1 kHz,which translates to a magnetoelectric coefficient of 514±27mV cm^(−1) Oe^(−1).Matthew J.Bauer Xiao Wen Prabal Tiwari David P.Arnold Jennifer S.Andrew 2018Microsystems & Nanoengineering2018,4,1:0
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