Louis Doré-Savard
Affiliations: | Université de Sherbrooke, Sherbrooke, Québec, Canada |
Area:
Pain, Neurotensin receptorsWebsite:
http://pages.usherbrooke.ca/labo_sarret/index.htmGoogle:
"Louis Doré-Savard"Mean distance: 19.73 (cluster 11)
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Publications
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Barrière DA, Midavaine É, Doré-Savard L, et al. (2020) Publisher Correction: Dichotomic effects of clinically used drugs on tumor growth, bone remodeling and pain management. Scientific Reports. 10: 2979 |
André Barrière D, Midavaine É, Doré-Savard L, et al. (2019) Dichotomic effects of clinically used drugs on tumor growth, bone remodeling and pain management. Scientific Reports. 9: 20155 |
Doré-Savard L, Barrière DA, Midavaine É, et al. (2013) Mammary cancer bone metastasis follow-up using multimodal small-animal MR and PET imaging. Journal of Nuclear Medicine : Official Publication, Society of Nuclear Medicine. 54: 944-52 |
Doré-Savard L, Beaudet N, Tremblay L, et al. (2013) A micro-imaging study linking bone cancer pain with tumor growth and bone resorption in a rat model. Clinical & Experimental Metastasis. 30: 225-36 |
Tétreault P, Dansereau MA, Doré-Savard L, et al. (2011) Weight bearing evaluation in inflammatory, neuropathic and cancer chronic pain in freely moving rats. Physiology & Behavior. 104: 495-502 |
Sarret P, Doré-Savard L, Tétreault P, et al. (2011) Using RNA interference to downregulate G protein-coupled receptors Neuromethods. 60: 379-402 |
Doré-Savard L, Otis V, Belleville K, et al. (2010) Behavioral, medical imaging and histopathological features of a new rat model of bone cancer pain. Plos One. 5: e13774 |
Sarret P, Doré-Savard L, Beaudet N. (2010) Direct application of siRNA for in vivo pain research. Methods in Molecular Biology (Clifton, N.J.). 623: 383-95 |
Doré-Savard L, Roussy G, Dansereau MA, et al. (2008) Central delivery of Dicer-substrate siRNA: a direct application for pain research. Molecular Therapy : the Journal of the American Society of Gene Therapy. 16: 1331-9 |
Roussy G, Dansereau MA, Doré-Savard L, et al. (2008) Spinal NTS1 receptors regulate nociceptive signaling in a rat formalin tonic pain model. Journal of Neurochemistry. 105: 1100-14 |