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6篇 您的检索式:作者名="Hannes Weber"
    题名 作者 年代 出处 被引量
1Data Visualization in Online Journalism and Its Implications for the Production Process显示文摘Wibke Weber & Hannes Rail 201216th International Conference on Information Visualization2012,,:1
2Laser-driven hydrodynamic instability experiments显示文摘Remington B A Weber S V Hann S W 1993Phys Fluids B1993,5,7:1
3Alignment of solid targets under extreme tight focus conditions generated by an ellipsoidal plasma mirror显示文摘The design of ellipsoidal plasma mirrors(EPMs)for the PEARL laser facility is presented.The EPMs achieve a magnification of 0.32 in focal spot size,and the corresponding increase in focused intensity is expected to be about 8.Designing and implementing such focusing optics for short-pulse(<100 fs)systems paves the way for their use in future high-power facilities,where they can be used to achieve intensities beyond 1023W/cm^(2).A retro-imaging-based target alignment system is also described,which is used to align solid targets at the output of the ellispoidal mirrors(with a numerical aperture of 0.75 in this case).Deepak Kumar Michal Smid Sushil Singh Alexander Soloviev Hannes Bohlin Konstantin Burdonov Gashaw Fente Alexander Kotov Livia Lancia Vit Leedl Sergey Makarov Michael Morrissey Sergey Perevalov Denis Romanovsky Sergey Pikuz Ryousuke Kodama David Neely Paul McKenna Tomas Lastovicka Mikhail Starodubtsev Stefan Weber Motoaki Nakatsutsumi Julien Fuchs 2019Matter and Radiation at Extremes2019,4,2:1
4Proliferative response of CD4+ T cells and hepatitis B virus clearance in chronic hepatitis with or without hepati tis B e-minus hepatitis B virus mutants显示文摘Hanns F Lohr wolfgang weber 1995Hepatology1995,22,:1
5Nat Genet:科学家设计新方法找到抑制癌症发育的新基因显示文摘英国桑格研究院的研究人员和他们的合作者们最近发现了帮助阻止前列腺癌、皮肤癌和乳腺癌发育的新基因。这些基因能够与众所周知的肿瘤抑制基因PTEN配合发挥作用,该研究还发现这些基因与人类前列腺肿瘤存在相关性。相关研究结果发表在国际学术期刊Nature Genetics上。该研究揭示了一些参与癌症发育的新途径,这些基因有望成为治疗PTEN突变癌症的新药物靶点。这项研究开发的一些方法也可以用于发现其他协同抑制癌症生长的基因。Jorge de la Rosa, Mathias Josef Friedrich, Yilong Li, Lena Rad, Hannes Ponstingl, Qi Liang, Sandra Bernaldo de Quirós, Imran Noorani, Emmanouil Metzakopian, Alexander Strong, Meng Amy Li, Gary J Hoffman, Rocío Fuente, George S Vassiliou, Roland Rad, Allan Bradley Juan Cadiñanos Jorge de la Rosa Juan Cadiñanos Jorge de la Rosa Carlos López-Otín Julia Weber Roland Rad Julia Weber Roland Rad Aurora Astudillo María Teresa Fernández-García María Soledad Fernández-García Gary J Hoffman Carlos López-Otín 2017现代生物医学进展2017,17,15:0
6Model-based optimization of adaptive external counterpulsation therapy显示文摘External counterpulsation therapy(ECP)is a non-invasive method to assist the circulatory system.The main principle of ECP is to initiate a diastolic pulse wave in the arterial system by squeezing the inner leg vessels.Superficial and low veins are compressed due to muscle contractions,which are triggered by functional electrical stimulation(FES).In this work,a new trigger method for the stimulation is proposed.Blood flow is determined by measuring the pulsatile change of conductivity in the observed segment by impedance plethysmography.The proposed“adaptive stimulation”allows the automatic adjustment of the start and duration of the stimulation to improve transport of venous blood.For this purpose,a mathematical circulation model was developed for optimization of the adaptive functional electrical stimulation.The model takes into account the effects of gravity,muscle pump with or without FES,and venous regurgitation.The model was shown to have a behavior similar to that of clinical measurements.The simulation showed a flow enhancement of up to 14%and,furthermore,that the start of the stimulation is less important than the duration of each stimulation phase.Therefore,an adaptation of the heart rate seems necessary,as the expulsion and refill times must remain relatively constant for an optimal pumping result.For a practical approach,it is reasonable to adapt the duration of stimulation to 56%of the cardiac cycle in order to reach a maximum flow.Soren Weyer Hannes Weber Christian Kleeberg Steffen Leonhardt Daniel Teichmann 2016International Journal of Modeling, Simulation, and Scientific Computing2016,7,2:0
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