20 results on '"Galarneau, André"'
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2. A discrete event simulation model of clinical and operating room efficiency outcomes of sugammadex versus neostigmine for neuromuscular block reversal in Canada
3. The RECITE Study
4. The RECITE Study
5. Detection and Visualization of Protein Interactions with Protein Fragment Complementation Assays
6. The STAR RNA binding proteins GLD-1, QKI, SAM68 and SLM-2 bind bipartite RNA motifs
7. P-190: GABA-dependent pathways in the neuroprotective effect of tramiprosate against amyloid-β toxicity
8. The RECITE Study: A Canadian Prospective, Multicenter Study of the Incidence and Severity of Residual Neuromuscular Blockade.
9. Target RNA motif and target mRNAs of the Quaking STAR protein
10. Protection of p27Kip1 mRNA by quaking RNA binding proteins promotes oligodendrocyte differentiation
11. β-Lactamase protein fragment complementation assays as in vivo and in vitro sensors of protein–protein interactions
12. Detection and Visualization of Protein Interactions with Protein Fragment Complementation Assays.
13. Phase II study of targeted therapy with temozolomide in acute myeloid leukaemia and high-risk myelodysplastic syndrome patients pre-screened for low O6-methylguanine DNA methyltransferase expression.
14. Protection of p27Kip1 mRNA by quaking RNA binding proteins promotes oligodendrocyte differentiation.
15. β-Lactamase protein fragment complementation assays as in vivo and in vitro sensors of protein?protein interactions.
16. Safety and Efficacy of Posaconazole for the Treatment of Invasive Fungal Infections After Failure of One Prior Line of Therapy
17. Pre-Screening for Low Methyl Guanine Methyltransferase (MGMT) Expression Results in High Response Rates to Temozolomide (TMZ) Therapy in AML and MDS Patients.
18. The RECITE Study: A Canadian Prospective, Multicenter Study of the Incidence and Severity of Residual Neuromuscular Blockade.
19. Protection of p27(Kip1) mRNA by quaking RNA binding proteins promotes oligodendrocyte differentiation.
20. Beta-lactamase protein fragment complementation assays as in vivo and in vitro sensors of protein protein interactions.
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