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Description
  • Particle tracking microrheology as one of the passive microrheology methods is a novel approach for determining viscoelastic properties of soft materials. Passive microrehology method is based on thermal motion of particles inserted into the investigated sample. Four different hyaluronic acid gels formed by mixing diverse concentrations of hyaluronic acid and cethyltrimethylammonium bromide (CTAB) and three different sizes of probes were used to characterize viscoelastic response of gel microstructure characterizing by elastic and viscous moduli. Our measured data show significant dependence of viscoelastic properties on used particle size, which point out the diversity of hyaluronic acid gel microstructure.
  • Particle tracking microrheology as one of the passive microrheology methods is a novel approach for determining viscoelastic properties of soft materials. Passive microrehology method is based on thermal motion of particles inserted into the investigated sample. Four different hyaluronic acid gels formed by mixing diverse concentrations of hyaluronic acid and cethyltrimethylammonium bromide (CTAB) and three different sizes of probes were used to characterize viscoelastic response of gel microstructure characterizing by elastic and viscous moduli. Our measured data show significant dependence of viscoelastic properties on used particle size, which point out the diversity of hyaluronic acid gel microstructure. (en)
Title
  • Microrheology characterization of hyaluronic acid gels
  • Microrheology characterization of hyaluronic acid gels (en)
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  • Microrheology characterization of hyaluronic acid gels
  • Microrheology characterization of hyaluronic acid gels (en)
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  • RIV/00216305:26310/14:PU109236!RIV15-MSM-26310___
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  • P(LO1211)
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  • 29205
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  • RIV/00216305:26310/14:PU109236
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  • microrheology, hyaluronic acid, microstructure (en)
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  • [459F763D117B]
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  • Masarykova Universita, Brno
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  • Brno
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  • XIV. Pracovní setkání fyzikálních chemiků a elektrochemiků, sborník příspěvků
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  • Pekař, Miloslav
  • Hnyluchová, Zuzana
  • Venerová, Tereza
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  • Masarykova univerzita
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  • 978-80-210-6842-1
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  • 26310
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