about
Design of a microfluidic device to quantify dynamic intra-nuclear deformation during cell migration through confining environments.Fibronectin layers by matrix-assisted pulsed laser evaporation from saline buffer-based cryogenic targets.Nuclear deformability constitutes a rate-limiting step during cell migration in 3-D environmentsInorganic-organic thin implant coatings deposited by lasers.Assays to measure nuclear mechanics in interphase cells.Nuclear envelope rupture and repair during cancer cell migration.Broken nuclei--lamins, nuclear mechanics, and disease.The interaction of cells and bacteria with surfaces structured at the nanometre scale.Different surface sensing of the cell body and nucleus in healthy primary cells and in a cancerous cell line on nanogrooves.Directing nuclear deformation on micropillared surfaces by substrate geometry and cytoskeleton organization.A Chemomechanical Model for Nuclear Morphology and Stresses during Cell Transendothelial Migration.Topographically induced self-deformation of the nuclei of cells: dependence on cell type and proposed mechanisms.Definition of a simple statistical parameter for the quantification of orientation in two dimensions: application to cells on grooves of nanometric depths.Nesprin-2 accumulates at the front of the nucleus during confined cell migration
P50
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P50
description
researcher ORCID ID = 0000-0002-3939-3601
@en
wetenschapper
@nl
name
Patricia M Davidson
@ast
Patricia M Davidson
@en
Patricia M Davidson
@es
Patricia M Davidson
@nl
type
label
Patricia M Davidson
@ast
Patricia M Davidson
@en
Patricia M Davidson
@es
Patricia M Davidson
@nl
prefLabel
Patricia M Davidson
@ast
Patricia M Davidson
@en
Patricia M Davidson
@es
Patricia M Davidson
@nl
P106
P21
P31
P496
0000-0002-3939-3601