Oury, Franck, 1977-....
Franck Oury researcher ORCID ID = 0000-0003-0562-9900
VIAF ID: 194018681 (Personal)
Permalink: http://viaf.org/viaf/194018681
Preferred Forms
4xx's: Alternate Name Forms (1)
Works
Title | Sources |
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Analyse du rôle du système PTH/PTHrp dans la régulation de la balance énergétique et des fonctions cognitives contrôlées par le système nerveux central | |
Analysis of PTH and PTHrp influence in regulating the control of energy balance by the central nervous system. | |
Biology without walls: the novel endocrinology of bone. | |
Bone, brain & beyond | |
Bone-brain crosstalk and potential associated diseases | |
The central regulation of bone mass, the first link between bone remodeling and energy metabolism | |
GGCX and VKORC1 inhibit osteocalcin endocrine functions. | |
Gpr158 mediates osteocalcin's regulation of cognition | |
Hoxa2- and rhombomere-dependent development of the mouse facial somatosensory map. | |
Identification of Lmo1 as part of a Hox-dependent regulatory network for hindbrain patterning | |
Leptin-dependent serotonin control of appetite: temporal specificity, transcriptional regulation, and therapeutic implications | |
Maternal and offspring pools of osteocalcin influence brain development and functions | |
Mechanisms by which autophagy regulates memory capacity in ageing | |
Mise au point d'un modèle de sénescence chondrocytaire et rôle de la O-GlcNAcylation dans l'arthrose | |
Neuronal autophagy modulation by the serine protease tPA under ischemic conditions. | |
La PARylation déclenche le changement conformationnel de G3BP1. | |
PARylation triggers conformational switch of G3BP1 | |
Reciprocal interaction between bone and gonads. | |
Regulation of male fertility by the bone-derived hormone osteocalcin | |
Rôle du gène Hoxa2 et de la segmentation rhombomérique dans le développement de la carte somatosensorielle de la face chez la souris | |
The role of PI3K/ AKT/ mTOR pathway in programmed cell death of Cajal-Retzius cells and their contribution in the maturation of functional and dysfunctional cortical circuits | |
A serotonin-dependent mechanism explains the leptin regulation of bone mass, appetite, and energy expenditure | |
La sérotonine intestinale : un acteur essentiel de la régulation de l'homéostasie du fer | |
Signaling through the M(3) muscarinic receptor favors bone mass accrual by decreasing sympathetic activity. | |
Towards a serotonin-dependent leptin roadmap in the brain |