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Martina Koneracka

Researcher at Slovak Academy of Sciences

Publications -  150
Citations -  2377

Martina Koneracka is an academic researcher from Slovak Academy of Sciences. The author has contributed to research in topics: Magnetic nanoparticles & Liquid crystal. The author has an hindex of 25, co-authored 145 publications receiving 2115 citations. Previous affiliations of Martina Koneracka include Centre national de la recherche scientifique.

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Chitosan-stabilized iron oxide nanoparticles for magnetic resonance imaging

TL;DR: In this article, a chitosan-stabilized iron oxide nanoparticles were used as contrast agents for MRI, and the results demonstrated the potential usefulness of the prepared nanoparticles as a contrast agent.
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The cytotoxicity of iron oxide nanoparticles with different modifications evaluated in vitro

TL;DR: The toxicity of magnetite nanoparticles modified with bioavailable materials such as dextran, bovine serum albumin, polyethylene glycol, and polyvinylpyrrolidone was studied in normal and cancer cells as discussed by the authors.
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Depolymerization of insulin amyloid fibrils by albumin-modified magnetic fluid.

TL;DR: It is found that MFBSAs are able to destroy amyloid fibrils in vitro, and it is assumed that the present findings represent a starting point for the application of the activeMFBSAs as therapeutic agents targeting insulin amyloidsosis.
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Capacitance changes in ferronematic liquid crystals induced by low magnetic fields.

TL;DR: The response in capacitance to low external magnetic fields of suspensions of spherical magnetic nanoparticles, single-wall carbon nanotubes, and SWCNT functionalized with Fe(3)O(4) nanoparticles in a nematic liquid crystal has been studied experimentally.
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Structuring from nanoparticles in oil-based ferrofluids

TL;DR: The evaluation of the experimental data obtained from small-angle X-ray scattering and ultrasonic attenuation indicates the formation of chain-like aggregates composed of magnetite particles as well as the orientation and sizes of aggregated structures under application of different magnetic-field strengths.