← back to search

Michael Shelley

New York University · US
Area of research
Condensed Matter Physics · Cell Biology
Research interest
Research interests include Physics, Mechanics, Microtubule, Classical mechanics, Molecular motor, and Fluid dynamics.
h-index
citations
3,632
works
47
NIH funding
primary concept
email

Recent publications

Self-propulsion, flocking and chiral active phases from particles spinning at intermediate Reynolds numbers
Nature Physics 2024cited by 26position: middledoi
Mechanics of spindle orientation in human mitotic cells is determined by pulling forces on astral microtubules and clustering of cortical dynein
Developmental Cell 2024cited by 16position: middledoi
Self-organized intracellular twisters
Nature Physics 2024cited by 15position: lastdoi
Learning fast, accurate, and stable closures of a kinetic theory of an active fluid
Journal of Computational Physics 2024cited by 6position: lastdoi
Laser ablation and fluid flows reveal the mechanism behind spindle and centrosome positioning
Nature Physics 2023cited by 25position: middledoi
A note about convected time derivatives for flows of complex fluids
Soft Matter 2023cited by 17position: middledoi
Hyperuniformity and phase enrichment in vortex and rotor assemblies
Nature Communications 2022cited by 43position: lastdoi
Toward the cellular-scale simulation of motor-driven cytoskeletal assemblies
eLife 2022cited by 33position: lastdoi
Euchromatin Activity Enhances Segregation and Compaction of Heterochromatin in the Cell Nucleus
Physical Review X 2022cited by 23position: lastdoi
Swirling Instability of the Microtubule Cytoskeleton
Physical Review Letters 2021cited by 50position: middledoi
Tissue fluidity mediated by adherens junction dynamics promotes planar cell polarity-driven ommatidial rotation
Nature Communications 2021cited by 38position: middledoi
A stable and accurate scheme for solving the Stefan problem coupled with natural convection using the Immersed Boundary Smooth Extension method
Journal of Computational Physics 2021cited by 33position: middledoi
The many behaviors of deformable active droplets
Mathematical Biosciences & Engineering 2021cited by 27position: middledoi
A scalable computational platform for particulate Stokes suspensions
Journal of Computational Physics 2020cited by 47position: lastdoi
Stoichiometric interactions explain spindle dynamics and scaling across 100 million years of nematode evolution
eLife 2020cited by 44position: middledoi
Ultra-sharp pinnacles sculpted by natural convective dissolution
Proceedings of the National Academy of Sciences 2020cited by 37position: middledoi
A design framework for actively crosslinked filament networks
New Journal of Physics 2020cited by 23position: lastdoi
The odd free surface flows of a colloidal chiral fluid
Nature Physics 2019cited by 309position: middledoi
Dynamics of Flexible Fibers in Viscous Flows and Fluids
Annual Review of Fluid Mechanics 2019cited by 192position: lastdoi
Relating Rheotaxis and Hydrodynamic Actuation using Asymmetric Gold-Platinum Phoretic Rods
Physical Review Letters 2019cited by 62position: lastdoi
Self-straining of actively crosslinked microtubule networks
Nature Physics 2019cited by 61position: lastdoi
Rotating Membrane Inclusions Crystallize Through Hydrodynamic and Steric Interactions
Physical Review Letters 2019cited by 57position: lastdoi
Extensile motor activity drives coherent motions in a model of interphase chromatin
Proceedings of the National Academy of Sciences 2018cited by 145position: middledoi
C. elegans chromosomes connect to centrosomes by anchoring into the spindle network
Nature Communications 2017cited by 144position: middledoi
Bistability in the synchronization of actuated microfilaments
Journal of Fluid Mechanics 2017cited by 65position: middledoi
Guiding microscale swimmers using teardrop-shaped posts.
Apollo (University of Cambridge) 2017cited by 35position: middledoi
A fast platform for simulating semi-flexible fiber suspensions applied to cell mechanics
Journal of Computational Physics 2016cited by 84position: lastdoi
Forces positioning the mitotic spindle: Theories, and now experiments
BioEssays 2016cited by 48position: middledoi
Hydrodynamic schooling of flapping swimmers
Nature Communications 2015cited by 151position: middledoi
Multiscale Polar Theory of Microtubule and Motor-Protein Assemblies
Physical Review Letters 2015cited by 147position: lastdoi

Grants

No grants ingested yet.

Frequent collaborators

David B. Stein · New York University7 papers (2019–2024)Daniel Needleman · University of California, Santa Barbara7 papers (2015–2024)Leif Ristroph · New York University6 papers (2012–2020)Ehssan Nazockdast · New York University5 papers (2016–2023)David Saintillan · University of San Diego5 papers (2013–2022)Robert N. Blackwell · University of Colorado Boulder4 papers (2015–2024)Sebastian Fürthauer · New York University4 papers (2015–2020)Jun Zhang · New York University4 papers (2012–2017)Hai‐Yin Wu · Harvard University Press4 papers (2016–2024) · 4 papers (2020–2024)Wen Yan · California Institute of Technology3 papers (2020–2022)Matthew A. Glaser · University of Colorado Boulder3 papers (2015–2022)Meredith D. Betterton · University of Colorado Boulder3 papers (2015–2022)Hassan Masoud · New York University3 papers (2013–2015)Jinzi Mac Huang · New York University2 papers (2020–2021)Gökberk Kabacaoğlu · The University of Texas at Austin2 papers (2023–2024)Tong Gao · New York University2 papers (2015–2015) · 2 papers (2012–2021) · 2 papers (2015–2019) · 2 papers (2024–2024)