Publications by authors named "Ilya Larin"

Article Synopsis
  • Studying how cells settle in 3D synthetic biomaterials is important for developing artificial tissues and organs, helping us understand cell behaviors like migration and division over time.
  • Advanced deep learning algorithms are enhancing our ability to segment cells and design biomaterials, as demonstrated through analysis of LHON fibroblasts in a 3D environment after gene modification.
  • Following the 3Rs principle, modeling cell interactions in biomaterials reduces the need for live organisms and aids in drug testing and understanding diseases, drawing inspiration from biomimicry to create effective tissue-like structures.
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In this study, the mechanical and thermophysical properties of carbon fiber-reinforced polyethersulfone are investigated. To enhance the interfacial interaction between carbon fibers and the polymer matrix, the surface modification of carbon fibers by thermal oxidation is conducted. By means of AFM and X-ray spectroscopy, it is determined that surface modification changes the morphology and chemical composition of carbon fibers.

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The structure of self-reinforced composites (SRCs) based on ultra-high molecular weight polyethylene (UHMWPE) was studied by means of Wide-Angle X-ray Scattering (WAXS), X-ray tomography, Raman spectroscopy, Scanning Electron Microscopy (SEM) and in situ tensile testing in combination with advanced processing tools to determine the correlation between the processing conditions, on one hand, and the molecular structure and mechanical properties, on the other. SRCs were fabricated by hot compaction of UHMWPE fibers at different pressure and temperature combinations without addition of polymer matrix or softener. It was found by WAXS that higher compaction temperatures led to more extensive melting of fibers with the corresponding reduction of the Herman's factor reflecting the degree of molecular orientation, while the increase of hot compaction pressure suppressed the melting of fibers within SRCs at a given temperature.

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