Publications

The formation of the Bicoid morphogen gradient requires protein movement from anteriorly localized mRNA.

Shawn Little, Gašper Tkačik, Thomas Kneeland, Eric Wieschaus and Thomas Gregor, PLoS Biology 9(3): e1000596 (2011).
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Approaching the molecular origins of collective dynamics in oscillating cell populations

Pankaj Mehta and Thomas Gregor, Current Opinion in Genetics & Development 20, 574-80 (2010).
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The Onset of Collective Behavior in Social Amoebae

T. Gregor, K. Fujimoto, N. Masaki and S. Sawai, Science 328, 1021-1025 (2010).
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Can we fit all of the data?

W. Bialek, T. Gregor, D.W. Tank, E.F. Wieschaus, Cell 132, 17-18 (2008).
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Shape and function of the Bicoid morphogen gradient in dipteran species with different sized embryos.

T. Gregor, A. P. McGregor, E. F. Wieschaus, Dev. Biol. 316, 350-358 (2008).
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The role of input noise in transcriptional regulation.

G. Tkačik, T. Gregor, W. Bialek, PLoS One 3, e2774 (2008).

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Probing the limits to positional information.

T. Gregor, E. F. Wieschaus, D. W. Tank, W. Bialek, Cell 130, 153-164 (2007).

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Stability and nuclear dynamics of the Bicoid morphogen gradient.

T. Gregor, E. F. Wieschaus, A. P. McGregor, W. Bialek, D. W. Tank, Cell 130, 141-152 (2007).

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Diffusion and scaling during early embryonic pattern formation.

T. Gregor, W. Bialek, R. R. deRuyter van Steveninck, D. W. Tank, E. F. Wieschaus, PNAS 102, 18403-18407 (2005).

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Minimization of the potential energy surface of Lennard-Jones clusters by quantum optimization

T. Gregor and R. Car, Chem. Phys. Lett. 412, 125-130 (2005).

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A comparison of methods for the calculation of NMR chemical shifts

T. Gregor, F. Mauri and R. Car, J. Chem. Phys. 111, 1815-1822 (1999).

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