The relationship between cell adhesion force activation on nano/micro-topographical surfaces and temporal dependence of cell morphology

T Naganuma - Nanoscale, 2017 - pubs.rsc.org
Interaction between adherent cells and extracellular matrix/scaffold surface features
performs a crucial role in inducing physiological functions via signal transduction …

The relationship between cell adhesion force activation on nano/micro-topographical surfaces and temporal dependence of cell morphology.

T Naganuma - Nanoscale, 2017 - europepmc.org
Interaction between adherent cells and extracellular matrix/scaffold surface features
performs a crucial role in inducing physiological functions via signal transduction …

The relationship between cell adhesion force activation on nano/micro-topographical surfaces and temporal dependence of cell morphology

T Naganuma - Nanoscale, 2017 - pubmed.ncbi.nlm.nih.gov
Interaction between adherent cells and extracellular matrix/scaffold surface features
performs a crucial role in inducing physiological functions via signal transduction …

The relationship between cell adhesion force activation on nano/micro-topographical surfaces and temporal dependence of cell morphology

T Naganuma - scholar.archive.org
Supplementary information The relationship between cell adhesion force activation on nano/micro-
topographical surfaces and temp Page 1 1 Supplementary information The relationship between …

[引用][C] The relationship between cell adhesion force activation on nano/micro-topographical surfaces and temporal dependence of cell morphology

T Naganuma - Nanoscale, 2017 - cir.nii.ac.jp
The relationship between cell adhesion force activation on nano/micro-topographical surfaces
and temporal dependence of cell morphology | CiNii Research CiNii 国立情報学研究所 学術 …