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Inria, the French national research institute for the digital sciences | Rennes, Bretagne | France | about 2 months ago
multiple combination of MRI sequences. This challenge allowed us to identify promising approaches to deal with this specific and still understudied setting. In particular, we proposed a method consisting in
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that members of the ABC-F protein family act as translation factors and that they are ubiquitous across prokaryotes and eukaryotes (Boël et al., NSMB 2014; Chen, Boël et al., NSMB 2014). Multiple occurrences
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Inria, the French national research institute for the digital sciences | Palaiseau, le de France | France | 9 days ago
. [9]). We are particularly interested in improving the selection of transmission opportunities (e.g., using precomputed sequences), possibly constructed with machine learning techniques (as in [8]). We
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. Their tasks will include: 1. Creating an age model for the collected sequences and, based on the results, selecting the sequences to be analysed. 2. Collecting and performing the planned sedimentary geochemical
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sequence allowing their import back to the organelle and how the organelle progenitors acquired the corresponding import machinery is a fascinating question. We recently challenged the hypothesis
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=false , https://link.springer.com/article/10.1186/s13059-025-03692-6 , https://link.springer.com/article/10.1186/s13059-023-03064-y ), Linear Mixed Models and GWAS. ● Familiarize with the sequencing
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the reproducibility and robustness of quantitative MRI maps across multiple clinical MRI platforms (1.5 T and 3.0 T – Siemens, GE, Philips) using test objects (phantoms). - Coordinate MRI acquisitions on a cohort of
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bring together over 100,000 whole-genome sequenced individuals from across 27 countries. The aim of the project is to provide a reference cohort of European citizens, selected to represent the entire population
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completed or are close to completing their PhD, and whose research interests align with the project’s focus, are especially encouraged to apply. The position is anticipated to start in September or October
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for sample formulation (by developing new polarization sources such as radicals or polarizing matrices) and ii) developing new methods and multi-nuclear, multi-dimensional NMR pulse sequences that will enable