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1.
NPJ Microgravity ; 9(1): 1, 2023 Jan 16.
Artigo em Inglês | MEDLINE | ID: mdl-36646718

RESUMO

The understanding of transport and mixing in fluids in the presence and in the absence of external fields and reactions represents a challenging topic of strategic relevance for space exploration. Indeed, mixing and transport of components in a fluid are especially important during long-term space missions where fuels, food and other materials, needed for the sustainability of long space travels, must be processed under microgravity conditions. So far, the processes of transport and mixing have been investigated mainly at the macroscopic and microscopic scale. Their investigation at the mesoscopic scale is becoming increasingly important for the understanding of mass transfer in confined systems, such as porous media, biological systems and microfluidic systems. Microgravity conditions will provide the opportunity to analyze the effect of external fields and reactions on optimizing mixing and transport in the absence of the convective flows induced by buoyancy on Earth. This would be of great practical applicative relevance to handle complex fluids under microgravity conditions for the processing of materials in space.

2.
Eur Phys J E Soft Matter ; 42(7): 86, 2019 Jul 11.
Artigo em Inglês | MEDLINE | ID: mdl-31289962

RESUMO

This paper describes the European Space Agency (ESA) experiments devoted to study thermodiffusion of fluid mixtures in microgravity environment, where sedimentation and convection do not affect the mass flow induced by the Soret effect. First, the experiments performed on binary mixtures in the IVIDIL and GRADFLEX experiments are described. Then, further experiments on ternary mixtures and complex fluids performed in DCMIX and planned to be performed in the context of the NEUF-DIX project are presented. Finally, multi-component mixtures studied in the SCCO project are detailed.

3.
Phys Chem Chem Phys ; 18(19): 13395-402, 2016 05 21.
Artigo em Inglês | MEDLINE | ID: mdl-27122358

RESUMO

Rapid and quantitative detection of the binding of nucleic acids to surface-immobilized probes remains a challenge in many biomedical applications. We investigated the hybridization of a set of fully complementary and defected 12-base long DNA oligomers by using the Reflective Phantom Interface (RPI), a recently developed multiplexed label-free detection technique. Based on the simple measurement of reflected light intensity, this technology enables to quantify the hybridization directly as it occurs on the surface with a sensitivity of 10 pg mm(-2). We found a strong effect of single-base mismatches and of their location on hybridization kinetics and equilibrium binding. In line with previous studies, we found that DNA-DNA binding is weaker on a surface than in the bulk. Our data indicate that this effect is a consequence of weak nonspecific binding of the probes to the surface.


Assuntos
DNA/química , Pareamento Incorreto de Bases , Técnicas Biossensoriais , Sondas de DNA/química , Cinética , Luz , Hibridização de Ácido Nucleico
4.
Opt Express ; 16(7): 4819-23, 2008 Mar 31.
Artigo em Inglês | MEDLINE | ID: mdl-18542580

RESUMO

We present results of experiments of diffraction by an amplitude screen, made of randomly distributed circular holes. By careful selection of the experimental parameters we obtain an intensity pattern strongly connected to the Voronoi diagram (VD) generated by the centers of the apertures. With the help of simulations we give a description of the observed phenomenon and elucidate the optimal parameters for its observation. Finally, we also suggest how it can be used for a fast, all-optical generation of VDs.


Assuntos
Iluminação/métodos , Modelos Teóricos , Processamento de Sinais Assistido por Computador , Simulação por Computador , Luz , Espalhamento de Radiação
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