Search Results - "Cytrynbaum, Eric N"

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  1. 1

    The mechanism of MinD stability modulation by MinE in Min protein dynamics by Carlquist, William C, Cytrynbaum, Eric N

    Published in PLoS computational biology (01-11-2023)
    “…The patterns formed both in vivo and in vitro by the Min protein system have attracted much interest because of the complexity of their dynamic interactions…”
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    Journal Article
  2. 2

    Mechanisms of self-organization of cortical microtubules in plants revealed by computational simulations by Allard, Jun F, Wasteneys, Geoffrey O, Cytrynbaum, Eric N

    Published in Molecular biology of the cell (15-01-2010)
    “…Microtubules confined to the two-dimensional cortex of elongating plant cells must form a parallel yet dispersed array transverse to the elongation axis for…”
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  3. 3

    Force generation by a dynamic Z-ring in Escherichia coli cell division by Allard, Jun F, Cytrynbaum, Eric N

    “…FtsZ, a bacterial homologue of tubulin, plays a central role in bacterial cell division. It is the first of many proteins recruited to the division site to…”
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  4. 4

    A CLASP-modulated cell edge barrier mechanism drives cell-wide cortical microtubule organization in Arabidopsis by Ambrose, Chris, Allard, Jun F., Cytrynbaum, Eric N., Wasteneys, Geoffrey O.

    Published in Nature communications (16-08-2011)
    “…It is well known that the parallel order of microtubules in the plant cell cortex defines the direction of cell expansion, yet it remains unclear how…”
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  5. 5

    A multiscale computational model of YAP signaling in epithelial fingering behavior by Mukhtar, Naba, Cytrynbaum, Eric N., Edelstein-Keshet, Leah

    Published in Biophysical journal (17-05-2022)
    “…In epithelial-mesenchymal transition (EMT), cells organized into sheets break away and become motile mesenchymal cells. EMT plays a crucial role in wound…”
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  6. 6

    Centering of a radial microtubule array by translocation along microtubules spontaneously nucleated in the cytoplasm by Rodionov, Vladimir, Malikov, Viacheslav, Cytrynbaum, Eric N, Kashina, Anna, Mogilner, Alexander

    Published in Nature cell biology (01-12-2005)
    “…Positioning of a radial array of microtubules (MTs) in the cell centre is crucial for cytoplasmic organization, but the mechanisms of such centering are…”
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  7. 7

    A Stochastic Model of Cortical Microtubule Anchoring and Mechanics Provides Regulatory Control of Microtubule Shape by Tian, Tim Y. Y., Macdonald, Colin B., Cytrynbaum, Eric N.

    Published in Bulletin of mathematical biology (01-11-2023)
    “…The organization of cortical microtubule arrays play an important role in the development of plant cells. Until recently, the direct mechanical influence of…”
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  8. 8

    Actin filament branching and protrusion velocity in a simple 1D model of a motile cell by Dawes, Adriana T., Bard Ermentrout, G., Cytrynbaum, Eric N., Edelstein-Keshet, Leah

    Published in Journal of theoretical biology (21-09-2006)
    “…We formulate and analyse a 1D model for the spatial distribution of actin density at the leading edge of a motile cell. The model incorporates nucleation,…”
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    A Mathematical Model for the Kinetics of the MalFGK[Formula: see text] Maltose Transporter by Hiller, Rebecca M, von Kügelgen, Julius, Bao, Huan, Van Hoa, Franck Duong, Cytrynbaum, Eric N

    Published in Bulletin of mathematical biology (15-05-2020)
    “…The MalFGK[Formula: see text] transporter regulates the movement of maltose across the inner membrane of E. coli and serves as a model system for bacterial ATP…”
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  11. 11

    A Mathematical Model for the Kinetics of the MalFGK2 Maltose Transporter by Hiller, Rebecca M., von Kügelgen, Julius, Bao, Huan, Van Hoa, Franck Duong, Cytrynbaum, Eric N.

    Published in Bulletin of mathematical biology (2020)
    “…The MalFGK 2 transporter regulates the movement of maltose across the inner membrane of E. coli and serves as a model system for bacterial ATP binding cassette…”
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  12. 12

    Correction to: A Mathematical Model for the Kinetics of the MalFGK2 Maltose Transporter by Hiller, Rebecca M., von Kügelgen, Julius, Bao, Huan, Duong Van Hoa, Franck, Cytrynbaum, Eric N.

    Published in Bulletin of mathematical biology (2020)
    “…The original version of this article unfortunately contained a mistake. The co-author Dr. Franck Duong Van Hoa first name and last name were misinterpreted in…”
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  13. 13

    Feasibility and Effectiveness of Group Exams in Mathematics Courses by Garaschuk, Kseniya M., Cytrynbaum, Eric N.

    “…Active learning techniques, such as peer instruction and group work, have been gaining a lot of traction in universities. Taking a natural next step in…”
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  14. 14

    A Model of Chloroplast Growth Regulation in Mesophyll Cells by Paton, Kelly M., Anderson, Lisa, Flottat, Pauline, Cytrynbaum, Eric N.

    Published in Bulletin of mathematical biology (01-09-2015)
    “…Chloroplasts regulate their growth to optimize photosynthesis. Quantitative data show that the ratio of total chloroplast area to mesophyll cell area is…”
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  15. 15

    A Mechanochemical Model Explains Interactions between Cortical Microtubules in Plants by Allard, Jun F., Ambrose, J. Christian, Wasteneys, Geoffrey O., Cytrynbaum, Eric N.

    Published in Biophysical journal (09-08-2010)
    “…Microtubules anchored to the two-dimensional cortex of plant cells collide through plus-end polymerization. Collisions can result in rapid depolymerization,…”
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  16. 16

    A Multistranded Polymer Model Explains MinDE Dynamics in E. coli Cell Division by Cytrynbaum, Eric N., Marshall, Brandon D.L.

    Published in Biophysical journal (15-08-2007)
    “…In Escherichia coli, the location of the site for cell division is regulated by the action of the Min proteins. These proteins undergo a periodic pole-to-pole…”
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  17. 17

    Periodic stimulus and the single cardiac cell—getting more out of 1D maps by Cytrynbaum, Eric N

    Published in Journal of theoretical biology (07-07-2004)
    “…The response of an isolated cardiac cell to a periodic stimulus has traditionally been studied in terms of the duration of the action potential (APD)…”
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  18. 18

    Predictions from a stochastic polymer model for the MinDE protein dynamics in Escherichia coli by Borowski, Peter, Cytrynbaum, Eric N

    “…The spatiotemporal oscillations of the Min proteins in the bacterium Escherichia coli play an important role in cell division. A number of different models…”
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    Estimating the bending modulus of a FtsZ bacterial-division protein filament by Cytrynbaum, Eric N, Li, Yongnan Devin, Allard, Jun F, Mehrabian, Hadi

    “…FtsZ, a cytoskeletal protein homologous to tubulin, is the principle constituent of the division ring in bacterial cells. It is known to have force-generating…”
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