This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a University of Alberta directory, so their courses may be missing. Find their university profile.
Research
Latest papers
CRISPR/Cas9-mediated PHOX2B functional knock-out in IMR32 neuroblastoma cells impairs neuronal excitability through dysregulation of ion channels genes.
Frontiers in physiology · 2026
The mammalian locomotor CPG: revealing the contents of the black box.
Journal of neurophysiology · 2025 · first author
Spinal inhibitory interneurons: regulators of coordination during locomotor activity.
Frontiers in neural circuits · 2023 · first author
Latest funding
- $810,900
Investigating functional connectivity within the mammalian locomotor CPG.
CIHR · 2024 · Nominated PI
- $749,700
Identification of a novel population of intrinsically oscillating spinal neurons and assessment of their role in locomotor rhythm generation.
CIHR · 2019 · Nominated PI
- $601,759
Analysis of the role of genetically-defined interneurons in the operation of the locomotor CPG.
CIHR · 2015 · Nominated PI
21 publications.
CRISPR/Cas9-mediated PHOX2B functional knock-out in IMR32 neuroblastoma cells impairs neuronal excitability through dysregulation of ion channels genes.
Cardani S, Bertocchi M, Donà E, Chiesa F, Cambria C, Cuadros Gamboa AL, Piscitelli E, Rancic V, Gosgnach S, Pagliardini S, Antonucci F, Fornasari D, Di Lascio S, Benfante R
The mammalian locomotor CPG: revealing the contents of the black box.
Gosgnach S
Spinal inhibitory interneurons: regulators of coordination during locomotor activity.
Gosgnach S
DG9-conjugated morpholino rescues phenotype in SMA mice by reaching the CNS via a subcutaneous administration.
Aslesh T, Erkut E, Ren J, Lim KRQ, Woo S, Hatlevig S, Moulton HM, Gosgnach S, Greer J, Maruyama R, Yokota T
Localization of Rhythm Generating Components of the Mammalian Locomotor Central Pattern Generator.
Ren J, Gosgnach S
Synaptic connectivity amongst components of the locomotor central pattern generator.
Gosgnach S
Recent Insights into the Rhythmogenic Core of the Locomotor CPG.
Rancic V, Gosgnach S
Mapping the Dynamic Recruitment of Spinal Neurons during Fictive Locomotion.
Rancic V, Ballanyi K, Gosgnach S
Sensory cortical control of movement.
Karadimas SK, Satkunendrarajah K, Laliberte AM, Ringuette D, Weisspapir I, Li L, Gosgnach S, Fehlings MG
Mapping Connectivity Amongst Interneuronal Components of the Locomotor CPG.
Haque F, Gosgnach S
Investigating functional connectivity within the mammalian locomotor CPG.
Principal investigators: Gosgnach, Simon
Keywords: Cpg; Interneuron; Locomotion; Motor Control; Spinal Cord
Identification of a novel population of intrinsically oscillating spinal neurons and assessment of their role in locomotor rhythm generation.
Principal investigators: Gosgnach, Simon
Keywords: Interneuron; Locomotion; Motor Control; Spinal Cord
Analysis of the role of genetically-defined interneurons in the operation of the locomotor CPG.
Principal investigators: Gosgnach, Simon
Keywords: Anterograde Tracing; Interneuron; Intracellular Recording; Locomotion; Motor Control; Retrograde Tracing; Spinal Cord
Analysis of the role of genetically-defined interneurons in the operation of the locomotor CPG.
Principal investigators: Gosgnach, Simon
Keywords: Anterograde Tracing; Interneuron; Intracellular Recording; Locomotion; Spinal Cord
Analysis of the role of genetically-defined interneurons in the operation of the locomotor CPG.
Principal investigators: Gosgnach, Simon
Keywords: Anterograde Tracing; Interneuron; Intracellular Recording; Locomotion; Spinal Cord
Identification of interneurons responsible for the initiation of activity in the mammalian locomotor central pattern generator.
Principal investigators: Olsen, Fraser G
Keywords: Central Pattern Generator; Immunohistochemistry; Interneuron; Locomotion; Motor Control; Neural Network; Neural Tracing; Spinal Cord
Characterization of genetically-defined lamina VIII spinal interneurons in the locomotor CPG
Principal investigators: Dyck, Jason M
Keywords: Interneuron; Locomotion; Spinal Cord
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Physiology
- Pediatrics
- Medicine
- Biochemistry
- Medical Neuroscience
Co-authors at University of Alberta, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
Jason Dyck
Pediatrics
4 shared papers, latest 2015
Silvia Pagliardini
Physiology
2 shared papers, latest 2026
John Greer
Physiology
1 shared papers, latest 2023
Douglas Zochodne
Medicine
1 shared papers, latest 2010
Robin Clugston
Physiology
1 shared papers, latest 2018
Marek Michalak
Biochemistry
1 shared papers, latest 2010
Ying Zhang
Medical Neuroscience
1 shared papers, latest 2017
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