about
Functional analysis of the engineered cardiac tissue grown on recombinant spidroin fiber meshesInteraction between spiral and paced waves in cardiac tissue.Spatial periodicity of Escherichia coli K-12 biofilm microstructure initiates during a reversible, polar attachment phase of development and requires the polysaccharide adhesin PGA.Conditions for Waveblock Due to Anisotropy in a Model of Human Ventricular Tissue.Periodicity of cell attachment patterns during Escherichia coli biofilm development.Photocontrol of Voltage-Gated Ion Channel Activity by Azobenzene Trimethylammonium Bromide in Neonatal Rat Cardiomyocytes.Curvature-Dependent Excitation Propagation in Cultured Cardiac TissueBiocontractile microfluidic channels for peristaltic pumping.Virtual cardiac monolayers for electrical wave propagation.Electrospun nanofibers as a tool for architecture control in engineered cardiac tissue.High resolution 3D microscopy study of cardiomyocytes on polymer scaffold nanofibers reveals formation of unusual sheathed structure.Wave mechanisms of pattern formation in microbial populations.Photo-control of excitation waves in cardiomyocyte tissue culture.Elastic excitable mediumSelf-organization of conducting pathways explains electrical wave propagation in cardiac tissues with high fraction of non-conducting cellsStilbene derivative as a photosensitive compound to control the excitability of neonatal rat cardiomyocytesHigh-frequency instability of wave frontsLight induced annihilation and shift of spiral wavesTraveling fronts of copper depositionWave emission from heterogeneities opens a way to controlling chaos in the heartRotating spiral waves created by geometryEliminating spiral waves pinned to an anatomical obstacle in cardiac myocytes by high-frequency stimuliLiberation of a pinned spiral wave by a single stimulus in excitable mediaArrhythmogenic role of the border between two areas of cardiac cell alignmentDevelopment of a reentrant arrhythmia model in human pluripotent stem cell-derived cardiac cell sheetsInfluence of patterned topographic features on the formation of cardiac cell clusters and their rhythmic activitiesEffect of heptanol and ethanol on excitation wave propagation in a neonatal rat ventricular myocyte monolayerThe Use of iPSC-Derived Cardiomyocytes and Optical Mapping for Erythromycin Arrhythmogenicity TestingFormation of an electrical coupling between differentiating cardiomyocytes
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P50
description
onderzoeker
@nl
researcher ORCID ID = 0000-0002-9258-436X
@en
name
Konstantin Agladze
@en
Konstantin I Agladze
@ast
Konstantin I Agladze
@es
Konstantin I Agladze
@nl
Konstantin Igorewitsch Agladse
@de
Константин Игоревич Агладзе
@ru
type
label
Konstantin Agladze
@en
Konstantin I Agladze
@ast
Konstantin I Agladze
@es
Konstantin I Agladze
@nl
Konstantin Igorewitsch Agladse
@de
Константин Игоревич Агладзе
@ru
altLabel
Konstantin Agladse
@de
Konstantin I Agladze
@en
Konstantin Igorevich Agladze
@en
prefLabel
Konstantin Agladze
@en
Konstantin I Agladze
@ast
Konstantin I Agladze
@es
Konstantin I Agladze
@nl
Konstantin Igorewitsch Agladse
@de
Константин Игоревич Агладзе
@ru
P106
P1153
6701553020
P21
P31
P496
0000-0002-9258-436X