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Statements

Subject Item
n2:RIV%2F61389013%3A_____%2F14%3A00434993%21RIV15-GA0-61389013
rdf:type
skos:Concept n18:Vysledek
rdfs:seeAlso
http://www.appleacademicpress.com/title.php?id=9781771880114
dcterms:description
Polymer supports have received much attention as a microenvironment for cell adhesion, proliferation, migration, and differentiation in tissue engineering and regenerative medicine. The three-dimensional scaffold structure provides support for high level of tissue organization and remodeling. Regeneration of different tissues, such as bone, cartilage, skin, nerves, or blood vessels, is investigated using such constructs. Superporous PHEMA constructs were prepared by bulk radical copolymerization of HEMA and EDMA in the presence of NaCl or/and liquid diluent (CyOH/DOH) or (NH4)2SO4 crystals. Morphology of the prepared scaffolds was characterized by several methods including scanning electron microscopy both in swollen (LVSEM) and dry (HVSEM) state, solvent (water and cyclohexane) regains, high- and low-pressure mercury porosimetry of lyophilized samples, and dynamic desorption of nitrogen. Polymer supports have received much attention as a microenvironment for cell adhesion, proliferation, migration, and differentiation in tissue engineering and regenerative medicine. The three-dimensional scaffold structure provides support for high level of tissue organization and remodeling. Regeneration of different tissues, such as bone, cartilage, skin, nerves, or blood vessels, is investigated using such constructs. Superporous PHEMA constructs were prepared by bulk radical copolymerization of HEMA and EDMA in the presence of NaCl or/and liquid diluent (CyOH/DOH) or (NH4)2SO4 crystals. Morphology of the prepared scaffolds was characterized by several methods including scanning electron microscopy both in swollen (LVSEM) and dry (HVSEM) state, solvent (water and cyclohexane) regains, high- and low-pressure mercury porosimetry of lyophilized samples, and dynamic desorption of nitrogen.
dcterms:title
Pore structure of poly(2-hydroxyethyl methacrylate) scaffolds Pore structure of poly(2-hydroxyethyl methacrylate) scaffolds
skos:prefLabel
Pore structure of poly(2-hydroxyethyl methacrylate) scaffolds Pore structure of poly(2-hydroxyethyl methacrylate) scaffolds
skos:notation
RIV/61389013:_____/14:00434993!RIV15-GA0-61389013
n3:aktivita
n11:P n11:I
n3:aktivity
I, P(GAP304/11/0731)
n3:dodaniDat
n19:2015
n3:domaciTvurceVysledku
n7:6338135 n7:7882068
n3:druhVysledku
n17:C
n3:duvernostUdaju
n4:S
n3:entitaPredkladatele
n13:predkladatel
n3:idSjednocenehoVysledku
37544
n3:idVysledku
RIV/61389013:_____/14:00434993
n3:jazykVysledku
n16:eng
n3:klicovaSlova
hydrogels; low-vacuum scanning electron mMicroscopy; poly(2-hydroxyethyl methacrylate)
n3:klicoveSlovo
n6:low-vacuum%20scanning%20electron%20mMicroscopy n6:hydrogels n6:poly%282-hydroxyethyl%20methacrylate%29
n3:kontrolniKodProRIV
[5D1838C869BE]
n3:mistoVydani
Oakville
n3:nazevZdroje
Research Methodology in Physics and Chemistry of Surfaces and Interfaces
n3:obor
n20:FH
n3:pocetDomacichTvurcuVysledku
2
n3:pocetStranKnihy
305
n3:pocetTvurcuVysledku
2
n3:projekt
n15:GAP304%2F11%2F0731
n3:rokUplatneniVysledku
n19:2014
n3:tvurceVysledku
Hlídková, Helena Horák, Daniel
s:numberOfPages
21
n12:hasPublisher
Apple Academic Press
n10:isbn
978-1-77188-011-4