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7篇 您的检索式:作者名="Caputo MA"
    题名 作者 年代 出处 被引量
1Mesenteric lymph duct ligation prevents trauma/hemorrhage shock-induced cardiac contractile dysfunction显示文摘Sambol JT Lee MA Caputo FJ 2009J Appl Physiol2009,106,1:1
2The costs ofmultiple sclerosis: a cross-sectional, multicenter cost-of-ill-ness 'study in Italy 显示文摘Amato MP Battaglia MA Caputo D 2002J Neurol2002,2492,:1
3Value of FDG PET/ CT in the assessment of patients with muhiple myeloma显示文摘Bredella MA Steinbaeh L Caputo G 2005AJR Am J Roentgenol2005,184,:1
4A guide for functional analysis of BRCA1 variants of uncertain significance 显示文摘Millot GA Carvalho MA Caputo SM 2012Hum Mutat2012,33,:1
5Abdomint)scrotal hydrocele in childhood :is it really a rare entity? 显示文摘Avolio L Chiari G Caputo MA 2000Urology2000,56,6:1
6Valuce of FDG PET in the assessment of patients with multiple myeloma显示文摘Bredella MA Steinbach L Caputo G 2005Am J Roentgenol2005,184,4:1
7Active spatial control of photothermal heating and thermo-actuated convective flow by engineering a plasmonic metasurface with heterodimer lattices显示文摘Thermo-plasmonics, using plasmonic structures as heat sources, has been widely used in biomedical and microfluidic applications. However, a metasurface with single-element unit cells, considered as the sole heat source in a unit cell, functions at a fixed wavelength and has limited control over the thermo-plasmonically induced hydrodynamic effects. Plasmonic metasurfaces with metal disk heterodimer lattices can be viewed to possess two heat sources within a unit cell and are therefore designed to photo-actively control thermal distributions and fluid dynamics at the nanoscale. The locations of heat sources can be switched, and the direction of the convective flow in the central region of the unit cell can be reversed by shifting the wavelength of the excitation source without any change in the excitation direction or physical actuation of the structural elements. The temperature and velocity of a fluid are spatiotemporally controlled by the wavelength selectivity and polarization sensitivity of the plasmonic metasurface. Additionally, we investigate the effects of geometric parameters on the surface lattice resonances and their impact on the temperature and fluid velocity of the optofluidic system. Our results demonstrate excellent optical control of these plasmonic metasurface heating and thermal convection performances to design flexible platforms for microfluidics.ZHIMIN JING PEIHANG LI CUIPING MA JIAYING WANG ROBERTO CAPUTO ALEXANDER OGOVOROV ARUP NEOGI HONGXING XU ZHIMING WANG 2022Photonics Research2022,10,11:0
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