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Cell migration asssay using multiple laminar flows in microchannel
Jun Kobayashi
, Fu Qiang Nie
, Masumi Yamada
, Masayuki Yamato
,
Akihiko Kikuchi
, Teruo Okano
Department of Materials Science and Technology
Research output
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Contribution to conference
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›
peer-review
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Keyphrases
Cell Migration
100%
Laminar Flow
100%
Cytochalasin D
66%
Phalloidin
66%
Epidermal Growth Factor
66%
Wound Edge
66%
Cell Sheet
33%
Growth Factors
33%
Mouse Embryonic Fibroblasts
33%
Immune Response
33%
Cellular Processes
33%
Fibroblast Migration
33%
Chemoattractant
33%
NIH3T3
33%
Cell Spreading
33%
Embryogenesis
33%
Cell Migration Assays
33%
Wound Healing
33%
Microfluidic Device
33%
Tissue Development
33%
Miniaturized Platform
33%
Immune Tissue
33%
Denuded Zone
33%
Cellular Assay
33%
Medicine and Dentistry
Cell Migration
100%
Cytochalasin D
66%
Phalloidin
66%
Wound
66%
Epidermal Growth Factor
66%
Growth Factor
33%
Cell Spreading
33%
Immune Response
33%
Chemoattractant
33%
Wound Healing
33%
Cell Migration Assay
33%
Embryo Development
33%
3T3 Cells
33%
Fibroblast
33%
Diseases
33%
Pharmacology, Toxicology and Pharmaceutical Science
Wound
100%
Cytochalasin D
100%
Epidermal Growth Factor
100%
Phalloidin
100%
Growth Factor
50%
Cellular Processes
50%
Chemoattractant
50%
Wound Healing
50%
Diseases
50%
Immunology and Microbiology
Cell Migration
100%
Laminar Flow
100%
Epidermal Growth Factor
50%
Growth Factor
25%
Immune Response
25%
Chemoattractant
25%
Wound Healing
25%
Embryo Development
25%
Cell Spreading
25%
Fibroblast
25%
Engineering
Microchannel
100%
Laminar Flows
100%
Critical Role
33%
Mouse Fibroblast
33%
Microfluidic Device
33%
Material Science
Laminar Flows
100%
Fibroblast
33%