Many natural and industrial processes rely on constrained transport, such as proteins moving through cells, particles confined in nanocomposite materials or gels, individuals in highly dense collectives and vehicular traffic conditions. These are examples of motion through crowded environments, in which the host matrix may retain some glass-like dynamics. Here we investigate constrained transport in a colloidal model system, in which dilute small spheres move in a slowly rearranging, glassy matrix of large spheres.
View Article and Find Full Text PDFWe compute the equilibrium phase diagram of two simple models for patchy particles with three and five patches in a very broad range of pressure and temperature. The phase diagram presents low-density crystal structures which compete with the fluid phase. The phase diagram of the five-patch model shows re-entrant melting, in analogy with the previously studied four-patch case, a metastable gas-liquid critical point and a stable, high-density liquid.
View Article and Find Full Text PDFFive per cent of patients with primary Sjogren's syndrome (pSS) develop malignant non-Hodgkin's lymphoma (NHL), usually of the mucosa-associated lymphoid tissue (MALT) and most frequently located in the major salivary glands. Rituximab (RTX), a chimeric monoclonal antibody against the CD20 molecule expressed on the surface of mature B cells that has been approved for the treatment of NHL, has been used to treat pSS-associated lymphoma. We have described two cases: one with MALT lymphoma in the parotid glands and the other with a rare thymus lymphoma accompanied by the rare complication of a bullous pneumopathy.
View Article and Find Full Text PDFWe perform molecular dynamics simulations of 'floating bond' (FB) models of network-forming liquids and compare the structure and dynamics against the BKS model of silica (van Beest et al 1990 Phys. Rev. Lett.
View Article and Find Full Text PDFWe study a binary non-additive hard-sphere mixture with square well interactions only between dissimilar particles. An appropriate choice of the inter-particle potential parameters favors the formation of equilibrium structures with tetrahedral ordering (Zaccarelli et al 2007 J. Chem.
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