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PUBLICATIONS
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Reduction of cortical pulling at mitotic entry facilitates aster centration - preprint
A. Rosfelter, G. de Labbey, J. Chenevert, R. Dumollard, S. Schaub, Z. Machaty, L. Besnardeau, C. Hebras, H. Turlier*, D. Burgess*, A. Mcdougall*, J Cell Science 2024

Dissecting the subcellular forces sculpting early C. elegans embryos - preprint
K. Yamamoto, S. Ichbiah, J. Pinto, F. Delbary, N. Goehring, H. Turlier, G. Charras biorRxiv 2023.04.12.536641
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Hydraulic fracturing and active coarsening position the lumen of the mouse blastocyst - Science
J. Dumortier, M. Le Verge-Serandour, A.-F. Tortorelli, A. Mielke, L. de Plater, H. Turlier*, J.-L. Maitre*, Hydraulic fracturing and active coarsening position the lumen of the mouse blastocyst. Science 365, 465-468 (2019)
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Asymmetric division of contractile domains couples cell positioning and fate specification
J.-L. Maître, H. Turlier, R. Illukkumbura, B. Eismann, R. Niwayama, F. Nédélec, and T. Hiiragi. Asymmetric division of contractile domains couples cell positioning and fate specification. Nature 536, 1–14 (2016).

Equilibrium physics breakdown reveals the active nature of red blood cell flickering
H. Turlier*, D.A Fedosov, B. Audoly, T. Auth, N.S. Gov, C. Sykes, J.-F. Joanny, G. Gompper and T. Betz. Equilibrium physics breakdown reveals the active nature of red blood cell flickering. Nature Physics 12, 513-519 (2016).

Pulsatile cell-autonomous contractility drives compaction in the mouse embryo
J.-L. Maître, R. Niwayama, H. Turlier, F. Nédélec, and T. Hiiragi. Pulsatile cell-autonomous contractility drives compaction in the mouse embryo. Nature Cell Biology 17, 849-855 (2015)
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Mechanical checkpoint for persistent cell polarization in adhesion-naive fibroblasts
P. Bun, J. Liu, H. Turlier, Z. Liu, K. Uriot, J.-F. Joanny and M. Coppey-Moisan, Mechanical checkpoint for persistent cell polarization in adhesion-naive fibroblasts. Biophysical Journal 107, 324-335 (2014).