Sort by
Refine Your Search
-
the heterogeneity of responses at the single-cell level and to identify the mechanisms of radiosensitization induced by these nanoparticles. The project falls within the field of quantitative radiobiology
-
Université Polytechnique Hauts-de-France and Universidade de São Paulo. The PhD candidate will be mainly based at LAMIH-CNRS/UPHF in Valenciennes, France, with planned long-term mobility periods at Poli-USP in
-
of biophysics, non-equilibrium statistical physics, and cancer biology. Its objective is to understand how stochastic fluctuations and cell-cell interactions combine to drive the spontaneous emergence
-
of transit passes (75%) + a sustainable mobility allowance of up to €300 per year • A location accessible by public transportation • Mandatory health insurance, subject to conditions • Access to the CNRS
-
controlling the long-term fate of naturally occurring radionuclides within this matrix remain poorly understood. In particular, the processes responsible for the progressive decrease in their mobility over time
-
calcium carbonate precipitation through the consumption of urea and a concomitant rise in pH near the cell membrane. Precipitation can be homogeneous or heterogeneous within the porous medium, but only
-
, cell biology, and tissue engineering. The project builds upon the complementary expertise of LAAS-CNRS and the RESTORE research center. LAAS-CNRS will provide expertise in microfabrication, microfluidic
-
advanced cell imaging. The successful candidate will work in a highly interdisciplinary research environment and will have access to state-of-the-art technological platforms, including cleanroom
-
scientists across some 40 research teams. The work carried out within the CBI covers a wide range of disciplines, including genetics, microbiology, cell biology, neurobiology and computational biology. The
-
multicolor fluorescence labeling of mouse neurons according to their cell lineages. The team is currently pursuing the improvement of the technology and exploring novel applications. Objectives: A first