Aparna Baskaran

Aparna Baskaran

Brandeis University

H-index: 31

North America-United States

About Aparna Baskaran

Aparna Baskaran, With an exceptional h-index of 31 and a recent h-index of 27 (since 2020), a distinguished researcher at Brandeis University, specializes in the field of Statistical Mechanics, Soft materials, biophysics.

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

Microscopic interactions control a structural transition in active mixtures of microtubules and molecular motors

Deep-learning Optical Flow Outperforms PIV in Obtaining Velocity Fields from Active Nematics

A machine learning approach to robustly determine director fields and analyze defects in active nematics

Exploring the Formation of Initial Disclination Loops of Active Nematics through Particle-Based Simulations

Flow states of two dimensional active gels driven by external shear

The interplay between activity and elasticity in model active composites

Learning active nematohydrodynamics with SINDy-PI

Deep learning-based optical flow outperforms PIV in obtaining velocity fields from experimental videos

Aparna Baskaran Information

University

Position

___

Citations(all)

5212

Citations(since 2020)

2811

Cited By

3676

hIndex(all)

31

hIndex(since 2020)

27

i10Index(all)

42

i10Index(since 2020)

35

Email

University Profile Page

Brandeis University

Google Scholar

View Google Scholar Profile

Aparna Baskaran Skills & Research Interests

Statistical Mechanics

Soft materials

biophysics

Top articles of Aparna Baskaran

Title

Journal

Author(s)

Publication Date

Microscopic interactions control a structural transition in active mixtures of microtubules and molecular motors

Proceedings of the National Academy of Sciences

Bibi Najma

Wei-Shao Wei

Aparna Baskaran

Peter J Foster

Guillaume Duclos

2024/1/9

Deep-learning Optical Flow Outperforms PIV in Obtaining Velocity Fields from Active Nematics

arXiv preprint arXiv:2404.15497

Phu N Tran

Sattvic Ray

Linnea Lemma

Yunrui Li

Reef Sweeney

...

2024/4/23

A machine learning approach to robustly determine director fields and analyze defects in active nematics

Soft matter

Yunrui Li

Zahra Zarei

Phu N Tran

Yifei Wang

Aparna Baskaran

...

2024

Exploring the Formation of Initial Disclination Loops of Active Nematics through Particle-Based Simulations

Bulletin of the American Physical Society

Yingyou Ma

Michael Hagan

Aparna Baskaran

2024/3/8

Flow states of two dimensional active gels driven by external shear

Soft matter

Wan Luo

Aparna Baskaran

Robert A Pelcovits

Thomas R Powers

2024

The interplay between activity and elasticity in model active composites

Bulletin of the American Physical Society

Layne Frechette

Aparna Baskaran

Michael Hagan

2024/3/5

Learning active nematohydrodynamics with SINDy-PI

Bulletin of the American Physical Society

Chris Amey

Michael Hagan

Aparna Baskaran

2024/3/5

Deep learning-based optical flow outperforms PIV in obtaining velocity fields from experimental videos

Bulletin of the American Physical Society

Phu Tran

Michael Hagan

Zvonimir Dogic

Pengyu Hong

Aparna Baskaran

...

2024/3/5

Spatio-temporal patterning of extensile active stresses in microtubule-based active fluids

PNAS nexus

Linnea M Lemma

Minu Varghese

Tyler D Ross

Matt Thomson

Aparna Baskaran

...

2023/5

Active fluids under deformable confinement: lessons from particle-based models

APS March Meeting Abstracts

Aparna Baskaran

TU Alfredo Sciortino

TU Andreas R Bausch

2023

Active membrane deformations of a minimal synthetic cell

bioRxiv

Alfredo Sciortino

Hammad Faizi

Sarvesh Uplap

Layne Frechette

Matthew SE Peterson

...

2023

Relating the steady states of 3D dry active nematics to microscopic parameters through particle-based simulations

APS March Meeting Abstracts

Yingyou Ma

Michael Hagan

Aparna Baskaran

Chris Amey

2023

From disks to channels: dynamics of active nematics confined to an annulus

Soft matter

Chaitanya Joshi

Zahra Zarei

Michael M Norton

Seth Fraden

Aparna Baskaran

...

2023

Interactions of an elastic ring with active nematic fluid

APS March Meeting Abstracts

Saaransh Singhal

Aparna Baskaran

Thomas Fai

2023

Extensile to contractile transition in active networks of microtubule and molecular motors

APS March Meeting Abstracts

Guillaume Duclos

Bibi Najma

Peter Foster

Aparna Baskaran

2023

Poiseuille flow of an active gel in a cylindrical tube

Bulletin of the American Physical Society

Thomas Powers

Aparna Baskaran

Wan Luo

Robert Pelcovits

2023/11/21

Data-driven model discovery using SINDy on particle based simulations of dry active nematics

Bulletin of the American Physical Society

Chris Amey

Yingyou Ma

Raymond Adkins

Paul Kreymborg

Zvonimir Dogic

...

2023/3/6

Learning a compact representation of the nematic director of active nematics

APS March Meeting Abstracts

Phu Tran

Zvonimir Dogic

Aparna Baskaran

Pengyu Hong

Michael Hagan

2023

Design principles for transporting vesicles with enclosed active particles (a)

Europhysics letters

Sarvesh Uplap

Michael F Hagan

Aparna Baskaran

2023/10/10

Effect of externally imposed shear flow on an active gel in a straight channel

Bulletin of the American Physical Society

Wan Luo

Aparna Baskaran

Robert Pelcovits

Thomas Powers

2022/11/20

See List of Professors in Aparna Baskaran University(Brandeis University)

Co-Authors

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: 22
Arvind Gopinath

Arvind Gopinath

University of California, Merced

H-index: 16
Yaouen Fily

Yaouen Fily

Florida Atlantic University

H-index: 14
shradha mishra

shradha mishra

Indian Institute of Technology, BHU

H-index: 11
Arvind Baskaran

Arvind Baskaran

Brandeis University

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