Charles S. Peskin

Affiliations: 
New York University, New York, NY, United States 
Area:
Applied Mechanics, Fluid and Plasma Physics, Mathematics
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"Charles Peskin"

Parents

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Alexandre J. Chorin grad student 1972 Courant Institute of Mathematical Sciences
 (Flow Patterns Around the Heart Valves: A Digital Computer Method for Solving the Equations of Motion)

Children

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Aaron Lee Fogelson grad student 1982 NYU
Tamar Schlick grad student 1987 NYU (Computational Biology Tree)
Alexandre Megiorin Roma grad student 1991-1995 Courant Institute, NYU
Luoding Zhu grad student 2001 NYU
Daniel B. Forger grad student 2003 NYU
Yongsam Kim grad student 2003 NYU
Sookkyung Lim grad student 2003 NYU
Boyce E. Griffith grad student 2005 NYU
Samuel A. Isaacson grad student 2005 NYU
Karim Azer grad student 2006 NYU
Yoichiro Mori grad student 2006 NYU
Shih-Ting Huang grad student 2007 NYU
Pilhwa Lee grad student 2007 NYU
Thomas T. Bringley grad student 2008 NYU
Paul E. Hand grad student 2009 NYU
Ignacio A. Rodriguez grad student 2009 NYU
Piriyadharshini Devendran grad student 2012 NYU
Andrew Matteson grad student 2013 NYU
Chen-Hung Wu grad student 2014 NYU

Collaborators

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Frank C. Hoppensteadt collaborator NYU Courant (Neurotree)
Enkeleida Lushi collaborator NYU
BETA: Related publications

Publications

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Ma J, Do M, Gros MAL, et al. (2023) Strong Intracellular Signal Inactivation Produces Sharper and More Robust Signaling from Cell Membrane to Nucleus. Microscopy and Microanalysis : the Official Journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada. 29: 1167
Davey M, Puelz C, Rossi S, et al. (2023) Simulating Cardiac Fluid Dynamics in the Human Heart. Arxiv
Puelz C, Danial Z, Raval JS, et al. (2021) Models for plasma kinetics during simultaneous therapeutic plasma exchange and extracorporeal membrane oxygenation. Mathematical Medicine and Biology : a Journal of the Ima
Ma J, Do M, Le Gros MA, et al. (2020) Strong intracellular signal inactivation produces sharper and more robust signaling from cell membrane to nucleus. Plos Computational Biology. 16: e1008356
Puelz C, Marinaro JL, Park YA, et al. (2020) Mathematical modeling of the impact of recirculation on exchange kinetics in tandem extracorporeal membrane oxygenation and therapeutic plasma exchange. Journal of Clinical Apheresis
Maxian O, Peskin CS. (2020) An Immersed Boundary Method With Subgrid Resolution and Improved Numerical Stability Applied to Slender Bodies in Stokes Flow Siam Journal On Scientific Computing. 42: B847-B868
Kaiser AD, McQueen DM, Peskin CS. (2019) Modeling the mitral valve. International Journal For Numerical Methods in Biomedical Engineering. e3240
Han J, Peskin CS. (2018) Spontaneous oscillation and fluid-structure interaction of cilia. Proceedings of the National Academy of Sciences of the United States of America
Bao Y, Donev A, Griffith BE, et al. (2017) An Immersed Boundary method with divergence-free velocity interpolation and force spreading. Journal of Computational Physics. 347: 183-206
Fai TG, Leo-Macias A, Stokes DL, et al. (2017) Image-based model of the spectrin cytoskeleton for red blood cell simulation. Plos Computational Biology. 13: e1005790
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