Calina Copos

About Calina Copos

Calina Copos, With an exceptional h-index of 8 and a recent h-index of 7 (since 2020), a distinguished researcher at University of North Carolina at Chapel Hill, specializes in the field of cell biology, applied and computational mathematics, fluid dynamics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Electric field–guided collective motility initiation of large epidermal cell groups

Inferring local molecular dynamics from the global actin network structure: A case study of 2D synthetic branching actin networks

Bridging global actin network patterns to local molecular dynamics: a combined modeling and machine learning framework

Actin turnover required for adhesion-independent bleb migration

Supracellular organization confers directionality and mechanical potency to migrating pairs of cardiopharyngeal progenitor cells

Stress fibres are embedded in a contractile cortical network (February, 10.1038/s41563-020-00825-z, 2020)

Connecting actin polymer dynamics across multiple scales

PI3K inhibition reverses migratory direction of single cells but not cell groups in electric field

Calina Copos Information

University

Position

___

Citations(all)

277

Citations(since 2020)

194

Cited By

81

hIndex(all)

8

hIndex(since 2020)

7

i10Index(all)

6

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Calina Copos Skills & Research Interests

cell biology

applied and computational mathematics

fluid dynamics

Top articles of Calina Copos

Electric field–guided collective motility initiation of large epidermal cell groups

Molecular biology of the cell

2023/5/1

Inferring local molecular dynamics from the global actin network structure: A case study of 2D synthetic branching actin networks

Journal of Theoretical Biology

2023/11/7

Calina Copos
Calina Copos

H-Index: 4

Bridging global actin network patterns to local molecular dynamics: a combined modeling and machine learning framework

bioRxiv

2022/9/7

Calina Copos
Calina Copos

H-Index: 4

Actin turnover required for adhesion-independent bleb migration

Fluids

2022/5/18

Calina Copos
Calina Copos

H-Index: 4

Wanda Strychalski
Wanda Strychalski

H-Index: 6

Supracellular organization confers directionality and mechanical potency to migrating pairs of cardiopharyngeal progenitor cells

Elife

2021/11/29

Stress fibres are embedded in a contractile cortical network (February, 10.1038/s41563-020-00825-z, 2020)

Nature materials

2021/3

Connecting actin polymer dynamics across multiple scales

Using Mathematics to Understand Biological Complexity: From Cells to Populations

2021

Calina Copos
Calina Copos

H-Index: 4

PI3K inhibition reverses migratory direction of single cells but not cell groups in electric field

bioRxiv

2020/8/6

A hybrid stochastic–deterministic mechanochemical model of cell polarization

Molecular biology of the cell

2020/7/15

Calina Copos
Calina Copos

H-Index: 4

Alex Mogilner
Alex Mogilner

H-Index: 44

Deformations of the cell cytoplasm through the lens of poro-viscoelastic materials

APS Division of Fluid Dynamics Meeting Abstracts

2020

Calina Copos
Calina Copos

H-Index: 4

See List of Professors in Calina Copos University(University of North Carolina at Chapel Hill)

Co-Authors

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