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3篇 您的检索式:作者名="MARTIN Monserrat"
    题名 作者 年代 出处 被引量
1Gemeitabine plus vinorelbine versus vinorelbine monotherapy in patients with metastatic breast cancer previously treated with anthracyclines and taxanes: final results of the phase Ⅲ Spanish Breast Cancer Research Group (GEICAM) trial显示文摘Miguel Martin Amparo Ruiz Monserrat Munoz 2007Lancet Oncol2007,8,3:1
2Heat-shock proteins expression in fish central nervous system and its possible relation with water acidosis resistance显示文摘MARTIN Monserrat CELIA Herna’ ndez GUILLERMO Bodega 1998Neuroscience Research1998,31,:1
3Direct electrification of silicon microfluidics for electric field applications显示文摘Microfluidic systems are widely used in fundamental research and industrial applications due to their unique behavior, enhanced control, and manipulation opportunities of liquids in constrained geometries. In micrometer-sized channels, electric fields are efficient mechanisms for manipulating liquids, leading to deflection, injection, poration or electrochemical modification of cells and droplets. While PDMS-based microfluidic devices are used due to their inexpensive fabrication, they are limited in terms of electrode integration. Using silicon as the channel material, microfabrication techniques can be used to create nearby electrodes. Despite the advantages that silicon provides, its opacity has prevented its usage in most important microfluidic applications that need optical access. To overcome this barrier, silicon-on-insulator technology in microfluidics is introduced to create optical viewports and channel-interfacing electrodes. More specifically, the microfluidic channel walls are directly electrified via selective, nanoscale etching to introduce insulation segments inside the silicon device layer, thereby achieving the most homogeneous electric field distributions and lowest operation voltages feasible across microfluidic channels. These ideal electrostatic conditions enable a drastic energy reduction, as effectively shown via picoinjection and fluorescence-activated droplet sorting applications at voltages below 6 and 15 V, respectively, facilitating low-voltage electric field applications in next-generation microfluidics.Diego Monserrat Lopez Philipp Rottmann Gabriel Puebla-Hellmann Ute Drechsler Marcel Mayor Sven Panke Martin Fussenegger Emanuel Lörtscher 2023Microsystems & Nanoengineering2023,9,3:0
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