List of Faculty Publications

Below is a list of Faculty publications imported from PubMed or manually added. By default, publications are sorted by year with titles displayed in ascending alphabetical order.
Shortcuts: Wühr, Martin | Wingreen, Ned | Wieschaus, Eric | Troyanskaya, Olga | Tilghman, Shirley | Storey, John | Singh, Mona | Shvartsman, Stanislav | Shaevitz, Joshua | Rabinowitz, Joshua | Murphy, Coleen | Levine, Michael {Levine, Michael S.} | Gregor, Thomas | Botstein, David | Bialek, William | Ayroles, Julien | Andolfatto, Peter | Akey, Joshua

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Y. Deng, Sun, M., and Shaevitz, J. W., Direct measurement of cell wall stress stiffening and turgor pressure in live bacterial cells., Phys Rev Lett, vol. 107, no. 15, p. 158101, 2011.
Y. Deng, Sun, M., and Shaevitz, J. W., Direct measurement of cell wall stress stiffening and turgor pressure in live bacterial cells., Phys Rev Lett, vol. 107, no. 15, p. 158101, 2011.
Y. Deng, Sun, M., and Shaevitz, J. W., Direct measurement of cell wall stress stiffening and turgor pressure in live bacterial cells., Phys Rev Lett, vol. 107, no. 15, p. 158101, 2011.
E. A. Abbondanzieri, Greenleaf, W. J., Shaevitz, J. W., Landick, R., and Block, S. M., Direct observation of base-pair stepping by RNA polymerase., Nature, vol. 438, no. 7067, pp. 460-5, 2005.
E. A. Abbondanzieri, Greenleaf, W. J., Shaevitz, J. W., Landick, R., and Block, S. M., Direct observation of base-pair stepping by RNA polymerase., Nature, vol. 438, no. 7067, pp. 460-5, 2005.
S. Thutupalli, Sun, M., Bunyak, F., Palaniappan, K., and Shaevitz, J. W., Directional reversals enable Myxococcus xanthus cells to produce collective one-dimensional streams during fruiting-body formation., J R Soc Interface, vol. 12, no. 109, p. 20150049, 2015.
S. Thutupalli, Sun, M., Bunyak, F., Palaniappan, K., and Shaevitz, J. W., Directional reversals enable Myxococcus xanthus cells to produce collective one-dimensional streams during fruiting-body formation., J R Soc Interface, vol. 12, no. 109, p. 20150049, 2015.
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Y. Deng and Shaevitz, J. W., Effect of aberration on height calibration in three-dimensional localization-based microscopy and particle tracking., Appl Opt, vol. 48, no. 10, pp. 1886-90, 2009.
Y. Deng and Shaevitz, J. W., Effect of aberration on height calibration in three-dimensional localization-based microscopy and particle tracking., Appl Opt, vol. 48, no. 10, pp. 1886-90, 2009.
Y. Deng, Coen, P., Sun, M., and Shaevitz, J. W., Efficient multiple object tracking using mutually repulsive active membranes., PLoS One, vol. 8, no. 6, p. e65769, 2013.
Y. Deng, Coen, P., Sun, M., and Shaevitz, J. W., Efficient multiple object tracking using mutually repulsive active membranes., PLoS One, vol. 8, no. 6, p. e65769, 2013.
Y. Deng, Coen, P., Sun, M., and Shaevitz, J. W., Efficient multiple object tracking using mutually repulsive active membranes., PLoS One, vol. 8, no. 6, p. e65769, 2013.
J. W. Shaevitz and Fletcher, D. A., Enhanced three-dimensional deconvolution microscopy using a measured depth-varying point-spread function., J Opt Soc Am A Opt Image Sci Vis, vol. 24, no. 9, pp. 2622-7, 2007.
T. Mignot, Shaevitz, J. W., Hartzell, P. L., and Zusman, D. R., Evidence that focal adhesion complexes power bacterial gliding motility., Science, vol. 315, no. 5813, pp. 853-6, 2007.
T. Mignot, Shaevitz, J. W., Hartzell, P. L., and Zusman, D. R., Evidence that focal adhesion complexes power bacterial gliding motility., Science, vol. 315, no. 5813, pp. 853-6, 2007.
T. Mignot, Shaevitz, J. W., Hartzell, P. L., and Zusman, D. R., Evidence that focal adhesion complexes power bacterial gliding motility., Science, vol. 315, no. 5813, pp. 853-6, 2007.
T. Mignot, Shaevitz, J. W., Hartzell, P. L., and Zusman, D. R., Evidence that focal adhesion complexes power bacterial gliding motility., Science, vol. 315, no. 5813, pp. 853-6, 2007.
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J. W. Shaevitz and Fletcher, D. A., Load fluctuations drive actin network growth., Proc Natl Acad Sci U S A, vol. 104, no. 40, pp. 15688-92, 2007.
J. W. Shaevitz and Fletcher, D. A., Load fluctuations drive actin network growth., Proc Natl Acad Sci U S A, vol. 104, no. 40, pp. 15688-92, 2007.
J. W. Shaevitz and Fletcher, D. A., Load fluctuations drive actin network growth., Proc Natl Acad Sci U S A, vol. 104, no. 40, pp. 15688-92, 2007.
J. W. Shaevitz and Fletcher, D. A., Load fluctuations drive actin network growth., Proc Natl Acad Sci U S A, vol. 104, no. 40, pp. 15688-92, 2007.
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K. Casey Huang, Ehrhardt, D. W., and Shaevitz, J. W., The molecular origins of chiral growth in walled cells., Curr Opin Microbiol, vol. 15, no. 6, pp. 707-14, 2012.
M. Sun, Wartel, M., Cascales, E., Shaevitz, J. W., and Mignot, T., Motor-driven intracellular transport powers bacterial gliding motility., Proc Natl Acad Sci U S A, vol. 108, no. 18, pp. 7559-64, 2011.
M. Sun, Wartel, M., Cascales, E., Shaevitz, J. W., and Mignot, T., Motor-driven intracellular transport powers bacterial gliding motility., Proc Natl Acad Sci U S A, vol. 108, no. 18, pp. 7559-64, 2011.
M. Sun, Wartel, M., Cascales, E., Shaevitz, J. W., and Mignot, T., Motor-driven intracellular transport powers bacterial gliding motility., Proc Natl Acad Sci U S A, vol. 108, no. 18, pp. 7559-64, 2011.
M. Sun, Wartel, M., Cascales, E., Shaevitz, J. W., and Mignot, T., Motor-driven intracellular transport powers bacterial gliding motility., Proc Natl Acad Sci U S A, vol. 108, no. 18, pp. 7559-64, 2011.
N. Ouzounov, Nguyen, J. P., Bratton, B. P., Jacobowitz, D., Gitai, Z., and Shaevitz, J. W., MreB Orientation Correlates with Cell Diameter in Escherichia coli., Biophys J, vol. 111, no. 5, pp. 1035-43, 2016.
N. Ouzounov, Nguyen, J. P., Bratton, B. P., Jacobowitz, D., Gitai, Z., and Shaevitz, J. W., MreB Orientation Correlates with Cell Diameter in Escherichia coli., Biophys J, vol. 111, no. 5, pp. 1035-43, 2016.
N. Ouzounov, Nguyen, J. P., Bratton, B. P., Jacobowitz, D., Gitai, Z., and Shaevitz, J. W., MreB Orientation Correlates with Cell Diameter in Escherichia coli., Biophys J, vol. 111, no. 5, pp. 1035-43, 2016.
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B. P. Bratton and Shaevitz, J. W., Simple Experimental Methods for Determining the Apparent Focal Shift in a Microscope System., PLoS One, vol. 10, no. 8, p. e0134616, 2015.
B. P. Bratton and Shaevitz, J. W., Simple Experimental Methods for Determining the Apparent Focal Shift in a Microscope System., PLoS One, vol. 10, no. 8, p. e0134616, 2015.
M. J. Rosenbluth, Crow, A., Shaevitz, J. W., and Fletcher, D. A., Slow stress propagation in adherent cells., Biophys J, vol. 95, no. 12, pp. 6052-9, 2008.
M. J. Rosenbluth, Crow, A., Shaevitz, J. W., and Fletcher, D. A., Slow stress propagation in adherent cells., Biophys J, vol. 95, no. 12, pp. 6052-9, 2008.
M. J. Rosenbluth, Crow, A., Shaevitz, J. W., and Fletcher, D. A., Slow stress propagation in adherent cells., Biophys J, vol. 95, no. 12, pp. 6052-9, 2008.
J. W. Shaevitz, Lee, J. Y., and Fletcher, D. A., Spiroplasma swim by a processive change in body helicity., Cell, vol. 122, no. 6, pp. 941-5, 2005.
J. W. Shaevitz, Lee, J. Y., and Fletcher, D. A., Spiroplasma swim by a processive change in body helicity., Cell, vol. 122, no. 6, pp. 941-5, 2005.
J. W. Shaevitz, Block, S. M., and Schnitzer, M. J., Statistical kinetics of macromolecular dynamics., Biophys J, vol. 89, no. 4, pp. 2277-85, 2005.
J. W. Shaevitz, Block, S. M., and Schnitzer, M. J., Statistical kinetics of macromolecular dynamics., Biophys J, vol. 89, no. 4, pp. 2277-85, 2005.
J. W. Shaevitz, Block, S. M., and Schnitzer, M. J., Statistical kinetics of macromolecular dynamics., Biophys J, vol. 89, no. 4, pp. 2277-85, 2005.
J. W. Shaevitz, Block, S. M., and Schnitzer, M. J., Statistical kinetics of macromolecular dynamics., Biophys J, vol. 89, no. 4, pp. 2277-85, 2005.
J. W. Shaevitz, Block, S. M., and Schnitzer, M. J., Statistical kinetics of macromolecular dynamics., Biophys J, vol. 89, no. 4, pp. 2277-85, 2005.
J. W. Shaevitz, Block, S. M., and Schnitzer, M. J., Statistical kinetics of macromolecular dynamics., Biophys J, vol. 89, no. 4, pp. 2277-85, 2005.
J. W. Shaevitz, Super-resolution for a 3D world., Nat Methods, vol. 5, no. 6, pp. 471-2, 2008.
J. W. Shaevitz, Super-resolution for a 3D world., Nat Methods, vol. 5, no. 6, pp. 471-2, 2008.