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Marco Cosentino Lagomarsino
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Individuality and universality in the growth-division laws of single E. coli cells. Phys Rev E. 93(1), pp.012408 (2016).
. Law of corresponding states for open collaborations. Phys. Rev. E. 93, pp.042307 (2016).
. Mapping Topoisomerase IV Binding and Activity Sites on the E. coli Genome. PLoS Genet. 12(5), pp.e1006025 (2016).
. Regulation of chain length in two diatoms as a growth-fragmentation process. Phys. Rev. E. 94, pp.022418 (2016).
. Characterizing the size and shape of sea ice floes. Sci Rep. 5, pp.10226-10226 (2015).
. Combined collapse by bridging and self-adhesion in a prototypical polymer model inspired by the bacterial nucleoid. Soft Matter. 11, pp.1677-1687 (2015).
. Dicke Simulators with Emergent Collective Quantum Computational Abilities. Phys. Rev. Lett. 114, pp.143601 (2015).
. Dynamic membrane patterning, signal localization and polarity in living cells. Soft matter. 11, pp.838–849 (2015).
. From structure to function of bacterial chromosomes: Evolutionary perspectives and ideas for new experiments. FEBS Letters. 589, pp.2996 - 3004 (2015).
. Metagenomic Potential for Understanding Horizontal Gene Transfer. in Encyclopedia of Metagenomics: Genes, Genomes and Metagenomes: Basics, Methods, Databases and Tools. Boston, MA. Springer US. pp. 416–420 (2015)
The nucleoid as a smart polymer. Front Microbiol. 6, pp.424-424 (2015).
. Speed of evolution in large asexual populations with diminishing returns. Journal of Theoretical Biology. 365, pp.23-31 (2015).
. Stochasticity and homeostasis in the E. coli replication and division cycle. Sci Rep. 5, pp.18261 (2015).
. Bacterial nucleoid structure probed by active drag and resistive pulse sensing. Integr Biol (Camb). 6(2), pp.184-91 (2014).
. Concerted control of Escherichia coli cell division. Proc Natl Acad Sci U S A. 111(9), pp.3431-5 (2014).
. Cross-species gene-family fluctuations reveal the dynamics of horizontal transfers. Nucleic Acids Res. 42(11), pp.6850-60 (2014).
. The genome-scale interplay amongst xenogene silencing, stress response and chromosome architecture in Escherichia coli. Nucleic Acids Research. (2014).
. . Measuring bacterial adaptation dynamics at the single-cell level using a microfluidic chemostat and time-lapse fluorescence microscopy. Analyst. 139, pp.5254-5262 (2014).
. Persistent super-diffusive motion of Escherichia coli chromosomal loci. Nat Commun. 5, pp.3854 (2014).
. Soft bounds on diffusion produce skewed distributions and Gompertz growth. Phys. Rev. E. 90, pp.032805 (2014).
. Cooperative motion of intrinsic and actuated semiflexible swimmers. Phys. Rev. E. 87, pp.032720 (2013).
. Evidence for soft bounds in Ubuntu package sizes and mammalian body masses. Proc Natl Acad Sci U S A. 110(52), pp.21054-8 (2013).
. Gene silencing and large-scale domain structure of the E. coli genome. Mol Biosyst. 9(4), pp.758-67 (2013).
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