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4篇 您的检索式:作者名="Malgaretti"
    题名 作者 年代 出处 被引量
1Mab21 , the mouse homolog of a C. elegans cell-fate specification gene, participates in cerebellar, midbrain and eye development显示文摘M. Mariani A. Corradi D. Baldessari N. Malgaretti O. Pozzoli R. Fesce S. Martinez E. Boncinelli G.G. Consalez 1998Mechanisms of Development1998,,1:1
2Characterization by yeast artifici al chromosome cloning of the linked apolipoprotein(a) and plasminogen genes and identification of the apolipoprotein(a) 5' flanking region 显示文摘 Acquati F Magnaghi P 1992Proc Natl Acad Sci USA1992,89,11:1
3Reconfiguring confined magnetic colloids with tunable fluid transport behavior显示文摘Collective dynamics of confined colloids are crucial in diverse scenarios such as self-assembly and phase behavior in materials science,microrobot swarms for drug delivery and microfluidic control.Yet,fine-tuning the dynamics of colloids in microscale confined spaces is still a formidable task due to the complexity of the dynamics of colloidal suspension and to the lack of methodology to probe colloids in confinement.Here,we show that the collective dynamics of confined magnetic colloids can be finely tuned by external magnetic fields.In particular,the mechanical properties of the confined colloidal suspension can be probed in real time and this strategy can be also used to tune microscale fluid transport.Our experimental and theoretical investigations reveal that the collective configuration characterized by the colloidal entropy is controlled by the colloidal concentration,confining ratio and external field strength and direction.Indeed,our results show that mechanical properties of the colloidal suspension as well as the transport of the solvent in microfluidic devices can be controlled upon tuning the entropy of the colloidal suspension.Our approach opens new avenues for the design and application of drug delivery,microfluidic logic,dynamic fluid control,chemical reaction and beyond.Zhizhi Sheng Mengchuang Zhang Jing Liu Paolo Malgaretti Jianyu Li Shuli Wang Wei Lv Rongrong Zhang Yi Fan Yunmao Zhang Xinyu Chen Xu Hou 2021National Science Review2021,8,5:1
4Precision of Radiation Chemistry Networks: Playing Jenga with Kinetic Models for Liquid-Phase Electron Microscopy显示文摘Liquid-phase transmission electron microscopy(LP-TEM)is a powerful tool to gain unique insights into dynamics at the nanoscale.The electron probe,however,can induce significant beam effects that often alter observed phenomena such as radiolysis of the aqueous phase.The magnitude of beam-induced radiolysis can be assessed by means of radiation chemistry simulations potentially enabling quantitative application of LP-TEM.Unfortunately,the computational cost of these simulations scales with the amount of reactants regarded.To minimize the computational cost,while maintaining accurate predictions,we optimize the parameter space for the solution chemistry of aqueous systems in general and for diluted HAuCl4 solutions in particular.Our results indicate that sparsened kinetic models can accurately describe steady-state formation during LP-TEM and provide a handy prerequisite for efficient multidimensional modeling.We emphasize that the demonstrated workflow can be easily generalized to any kinetic model involving multiple reaction pathways.Birk Fritsch Paolo Malgaretti Jens Harting Karl J.J.Mayrhofer Andreas Hutzler 2023Precision Chemistry2023,1,10:0
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