Connection
Meredith Betterton to Microtubules
This is a "connection" page, showing publications Meredith Betterton has written about Microtubules.
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Connection Strength |
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6.062 |
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Ansari S, Gergely ZR, Flynn P, Li G, Moore JK, Betterton MD. Quantifying Yeast Microtubules and Spindles Using the Toolkit for Automated Microtubule Tracking (TAMiT). Biomolecules. 2023 06 04; 13(6).
Score: 0.745
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Wijeratne SS, Fiorenza SA, Neary AE, Subramanian R, Betterton MD. Motor guidance by long-range communication on the microtubule highway. Proc Natl Acad Sci U S A. 2022 07 12; 119(28):e2120193119.
Score: 0.700
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Betterton MD. A new view of how cytoplasmic viscosity affects microtubule dynamics. Dev Cell. 2022 02 28; 57(4):419-420.
Score: 0.683
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Moore JM, Thompson TN, Glaser MA, Betterton MD. Collective motion of driven semiflexible filaments tuned by soft repulsion and stiffness. Soft Matter. 2020 Oct 28; 16(41):9436-9442.
Score: 0.623
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Blackwell R, Sweezy-Schindler O, Edelmaier C, Gergely ZR, Flynn PJ, Montes S, Crapo A, Doostan A, McIntosh JR, Glaser MA, Betterton MD. Contributions of Microtubule Dynamic Instability and Rotational Diffusion to Kinetochore Capture. Biophys J. 2017 Feb 07; 112(3):552-563.
Score: 0.469
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Kuan HS, Betterton MD. Motor Protein Accumulation on Antiparallel Microtubule Overlaps. Biophys J. 2016 05 10; 110(9):2034-43.
Score: 0.457
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Blackwell R, Sweezy-Schindler O, Baldwin C, Hough LE, Glaser MA, Betterton MD. Microscopic origins of anisotropic active stress in motor-driven nematic liquid crystals. Soft Matter. 2016 Mar 14; 12(10):2676-87.
Score: 0.446
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Kuan HS, Betterton MD. Biophysics of filament length regulation by molecular motors. Phys Biol. 2013 Jun; 10(3):036004.
Score: 0.369
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Hough LE, Schwabe A, Glaser MA, McIntosh JR, Betterton MD. Microtubule depolymerization by the Kinesin-8 motor Kip3p: a mathematical model. Biophys J. 2009 Apr 22; 96(8):3050-64.
Score: 0.280
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Gergely ZR, Jones MH, Zhou B, Cash C, McIntosh JR, Betterton MD. Distinct regions of the kinesin-5 C-terminal tail are essential for mitotic spindle midzone localization and sliding force. Proc Natl Acad Sci U S A. 2023 09 26; 120(39):e2306480120.
Score: 0.190
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Gergely ZR, Ansari S, Jones MH, Zhou B, Cash C, McIntosh R, Betterton MD. The kinesin-5 protein Cut7 moves bidirectionally on fission yeast spindles with activity that increases in anaphase. J Cell Sci. 2023 03 01; 136(5).
Score: 0.183
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Fiorenza SA, Steckhahn DG, Betterton MD. Modeling spatiotemporally varying protein-protein interactions in CyLaKS, the Cytoskeleton Lattice-based Kinetic Simulator. Eur Phys J E Soft Matter. 2021 Aug 18; 44(8):105.
Score: 0.165
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Lamson AR, Edelmaier CJ, Glaser MA, Betterton MD. Theory of Cytoskeletal Reorganization during Cross-Linker-Mediated Mitotic Spindle Assembly. Biophys J. 2019 05 07; 116(9):1719-1731.
Score: 0.140
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Rincon SA, Lamson A, Blackwell R, Syrovatkina V, Fraisier V, Paoletti A, Betterton MD, Tran PT. Kinesin-5-independent mitotic spindle assembly requires the antiparallel microtubule crosslinker Ase1 in fission yeast. Nat Commun. 2017 05 17; 8:15286.
Score: 0.123
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Kuan HS, Betterton MD. Phase-plane analysis of the totally asymmetric simple exclusion process with binding kinetics and switching between antiparallel lanes. Phys Rev E. 2016 Aug; 94(2-1):022419.
Score: 0.117
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Gergely ZR, Crapo A, Hough LE, McIntosh JR, Betterton MD. Kinesin-8 effects on mitotic microtubule dynamics contribute to spindle function in fission yeast. Mol Biol Cell. 2016 11 07; 27(22):3490-3514.
Score: 0.114
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Gao T, Blackwell R, Glaser MA, Betterton MD, Shelley MJ. Multiscale modeling and simulation of microtubule-motor-protein assemblies. Phys Rev E Stat Nonlin Soft Matter Phys. 2015; 92(6):062709.
Score: 0.111
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Gao T, Blackwell R, Glaser MA, Betterton MD, Shelley MJ. Multiscale polar theory of microtubule and motor-protein assemblies. Phys Rev Lett. 2015 Jan 30; 114(4):048101.
Score: 0.104
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Yan W, Ansari S, Lamson A, Glaser MA, Blackwell R, Betterton MD, Shelley M. Toward the cellular-scale simulation of motor-driven cytoskeletal assemblies. Elife. 2022 05 26; 11.
Score: 0.043
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Connection Strength
The connection strength for concepts is the sum of the scores for each matching publication.
Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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