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Philip Pincus grad student 2004 UC Santa Barbara
 (Biological physics studies of microtubules, taxol, and the microtubules-associated protein, tau.)
Yale E. Goldman post-doc 2004-2007 Penn (Neurotree)
Erika L. F. Holzbaur post-doc 2004-2007 Penn (Cell Biology Tree)
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Publications

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Chauhan P, Lee HB, Goodbee N, et al. (2024) Ionic strength alters crosslinker-driven self-organization of microtubules. Cytoskeleton (Hoboken, N.J.)
Labastide JA, Quint DA, Cullen RK, et al. (2023) Non-specific cargo-filament interactions slow down motor-driven transport. The European Physical Journal. E, Soft Matter. 46: 134
McGorty RJ, Currie CJ, Michel J, et al. (2023) Kinesin and myosin motors compete to drive rich multiphase dynamics in programmable cytoskeletal composites. Pnas Nexus. 2: pgad245
Sahu S, Chauhan P, Lumen E, et al. (2023) Interplay of self-organization of microtubule asters and crosslinking protein condensates. Pnas Nexus. 2: pgad231
Fermino do Rosário C, Zhang Y, Stadnicki J, et al. (2023) Lateral and longitudinal compaction of PRC1 overlap zones drives stabilization of interzonal microtubules. Molecular Biology of the Cell. mbcE23020049
Sasanpour M, Achiriloaie DH, Lee G, et al. (2022) Reconstituting and Characterizing Actin-Microtubule Composites with Tunable Motor-Driven Dynamics and Mechanics. Journal of Visualized Experiments : Jove
Chauhan P, Sahu S, Goodbee N, et al. (2022) Self-Assembly of Microtubule Tactoids. Journal of Visualized Experiments : Jove
Sheung JY, Achiriloaie DH, Currie C, et al. (2021) Motor-Driven Restructuring of Cytoskeleton Composites Leads to Tunable Time-Varying Elasticity. Acs Macro Letters. 10: 1151-1158
Lee G, Leech G, Lwin P, et al. (2021) Active cytoskeletal composites display emergent tunable contractility and restructuring. Soft Matter
Lee G, Leech G, Rust MJ, et al. (2021) Myosin-driven actin-microtubule networks exhibit self-organized contractile dynamics. Science Advances. 7
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