Arvind Gopinath

Arvind Gopinath

University of California, Merced

H-index: 22

North America-United States

About Arvind Gopinath

Arvind Gopinath, With an exceptional h-index of 22 and a recent h-index of 18 (since 2020), a distinguished researcher at University of California, Merced, specializes in the field of Biomechanics, Soft Matter, Active matter, Ciliary and Flagellar Motility, Physical Biology.

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

Clots reveal anomalous elastic behavior of fiber networks

Multi-population dissolution in confined active fluids

Elastic interactions compete with persistent cell motility to drive durotaxis

Facile determination of the Poisson’s ratio and Young’s modulus of polyacrylamide gels and polydimethylsiloxane

Effect of boundary elastic interactions on motile cells

Natural and Engineered Isoforms of the Inflammasome Adaptor ASC Form Noncovalent, pH-Responsive Hydrogels

Size-Dependent Diffusion and Dispersion of Particles in Mucin.

Design and characterization of protein-based, pH-responsive hydrogels with potential biomedical applications

Arvind Gopinath Information

University

Position

Department of Bioengineering

Citations(all)

1868

Citations(since 2020)

1094

Cited By

1269

hIndex(all)

22

hIndex(since 2020)

18

i10Index(all)

30

i10Index(since 2020)

22

Email

University Profile Page

University of California, Merced

Google Scholar

View Google Scholar Profile

Arvind Gopinath Skills & Research Interests

Biomechanics

Soft Matter

Active matter

Ciliary and Flagellar Motility

Physical Biology

Top articles of Arvind Gopinath

Title

Journal

Author(s)

Publication Date

Clots reveal anomalous elastic behavior of fiber networks

Science Advances

Andrei Zakharov

Myra Awan

Arvind Gopinath

Sang-Joon John Lee

Anand K Ramasubramanian

...

2024/1/10

Multi-population dissolution in confined active fluids

Soft Matter

Cayce Fylling

Joshua Tamayo

Arvind Gopinath

Maxime Theillard

2024

Elastic interactions compete with persistent cell motility to drive durotaxis

arXiv preprint arXiv:2402.15036

Subhaya Bose

Haiqin Wang

Xinpeng Xu

Arvind Gopinath

Kinjal Dasbiswas

2024/2/23

Facile determination of the Poisson’s ratio and Young’s modulus of polyacrylamide gels and polydimethylsiloxane

ACS Applied Polymer Materials

Ariell Marie Smith

Dominique Gabriele Inocencio

Brandon Michael Pardi

Arvind Gopinath

Roberto Carlos Andresen Eguiluz

2024/2/5

Effect of boundary elastic interactions on motile cells

APS March Meeting Abstracts

Subhaya Bose

Haiqin Wang

Xinpeng Xu

Arvind Gopinath

Kinjal Dasbiswas

2023

Natural and Engineered Isoforms of the Inflammasome Adaptor ASC Form Noncovalent, pH-Responsive Hydrogels

Biomacromolecules

Eduardo A Gaspar-Morales

Anthony Waterston

Pedro Diaz-Parga

Ariell M Smith

Mourad Sadqi

...

2023/11/6

Size-Dependent Diffusion and Dispersion of Particles in Mucin.

Polymers

Arvind Gopinath

Joshua Tamayo

Ruei-Feng Shiu

Wei-Chun Chin

Parveen Kumar

2023/7/29

Design and characterization of protein-based, pH-responsive hydrogels with potential biomedical applications

Biophysical Journal

Eduardo A Gaspar-Morales

Anthony W Waterston

Pedro Diaz-Parga

Ariell M Smith

Roberto C Andresen Eguiluz

...

2023/2/10

Collective States of Active Particles With Elastic Dipolar Interactions

Frontiers in Physics

Subhaya Bose

Patrick S Noerr

Ajay Gopinathan

Arvind Gopinath

Kinjal Dasbiswas

2022/5/3

Hydrodynamic simulations of bacterial swarms highlight the role of cell morphology and cell-cell interactions on emergent patterns

APS March Meeting Abstracts

Joshua Tamayo

Arvind Gopinath

2022

Ambient fluid rheology modulates oscillatory instabilities in filament-motor systems

Frontiers in Physics

Joshua Tamayo

Anupam Mishra

Arvind Gopinath

2022/6/21

Glycosaminoglycans and glycoproteins influence the elastic response of synovial fluid nanofilms on model oxide surfaces

Colloids and Surfaces B: Biointerfaces

Amar S Mann

Ariell M Smith

Joyce O Saltzherr

Arvind Gopinath

Roberto C Andresen Eguiluz

2022/2/10

Elastic interactions in confinement direct cell motility

APS March Meeting Abstracts

Subhaya Bose

Arvind Gopinath

Kinjal Dasbiswas

2022

Effect of ambient fluid rheology on oscillatory instabilities in filament-motor systems

bioRxiv

Anupam Mishra

Joshua Tamayo

Arvind Gopinath

2022/3/17

Spreading rates of bacterial colonies depend on substrate stiffness and permeability

PNAS nexus

Merrill E Asp

Minh-Tri Ho Thanh

Danielle A Germann

Robert J Carroll

Alana Franceski

...

2022/3

Computational Dynamics of Interfaces in Multispecies Active Fluids

APS Division of Fluid Dynamics Meeting Abstracts

Cayce Fylling

Maxime Theillard

Arvind Gopinath

2021

Fluid-Structure Interaction of Slender Biofilaments at Low Reynolds Numbers

Mehrad Mortazavi

Venkattraman Ayyaswamy

Arvind Gopinath

Sachin Goyal

2021/11/1

Multi-scale multi-species modeling of emergent flows andactive mixing in confined bacterial swarms

APS March Meeting Abstracts

Cayce Fylling

Arvind Gopinath

Maxime Theillard

2021

Matrix Stiffness Modulates Mechanical Interactions and Promotes Contact between Motile

Biomedicines

Subhaya Bose

Kinjal Dasbiswas

Arvind Gopinath

2021/4/15

Estimating the Role of Active Matter and Population Genetic Dynamics in Enhancing Antibiotic Resistance in Expanding Bacterial Colonies via Lattice Simulations

Bulletin of the American Physical Society

Jimmy Gonzalez

Daniel Beller

Arvind Gopinath

2021/3/19

See List of Professors in Arvind Gopinath University(University of California, Merced)

Co-Authors

H-index: 109
L Mahadevan

L Mahadevan

Harvard University

H-index: 83
Vikram S. Deshpande

Vikram S. Deshpande

University of Cambridge

H-index: 75
Karl Iagnemma

Karl Iagnemma

Massachusetts Institute of Technology

H-index: 61
M. Cristina Marchetti

M. Cristina Marchetti

University of California, Santa Barbara

H-index: 48
Michael Hagan

Michael Hagan

Brandeis University

H-index: 47
Paulo E. Arratia

Paulo E. Arratia

University of Pennsylvania

academic-engine