632 results on '"Kiehn, Ole"'
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2. Pedunculopontine Chx10+ neurons control global motor arrest in mice
3. Deconstructing the modular organization and real-time dynamics of mammalian spinal locomotor networks
4. A community-based transcriptomics classification and nomenclature of neocortical cell types
5. A community-based transcriptomics classification and nomenclature of neocortical cell types
6. Locomotion: Circuits and Physiology
7. Author Correction: Pedunculopontine Chx10+ neurons control global motor arrest in mice
8. Targeted activation of midbrain neurons restores locomotor function in mouse models of parkinsonism
9. Excitatory spinal Lhx9-derived interneurons modulate locomotor frequency in mice
10. Spinal inhibitory neurons degenerate before motor neurons and excitatory neurons in a mouse model of ALS
11. Excitatory Spinal Lhx9-Derived Interneurons Modulate Locomotor Frequency in Mice
12. Dopamine and noradrenaline activate spinal astrocyte endfeet via D1-like receptors
13. Dopamine and noradrenaline activate spinal astrocyte endfeet via D1‐like receptors
14. Locomotor deficits in a mouse model of ALS are paralleled by loss of V1-interneuron connections onto fast motor neurons
15. Distinct subtypes of proprioceptive dorsal root ganglion neurons regulate adaptive proprioception in mice
16. Brainstem neurons that command mammalian locomotor asymmetries
17. Spinal inhibitory neurons degenerate before motor neurons and excitatory neurons in a mouse model of ALS
18. EphA4 Defines a Class of Excitatory Locomotor-Related Interneurons
19. Mammalian Motor Neurons Corelease Glutamate and Acetylcholine at Central Synapses
20. Role of EphA4 and EphrinB3 in Local Neuronal Circuits That Control Walking
21. Locomotion: Circuits and Physiology
22. -binding protein NECAB2 facilitates inflammatory pain hypersensitivity
23. Synaptic Signaling in an Active Central Network conly Moderately Changes Passive Membrane Properties
24. Neuronal atlas of the dorsal horn defines its architecture and links sensory input to transcriptional cell types
25. Pedunculopontine Chx10 + neurons control global motor arrest in mice.
26. Deconstructing the modular organization and real-time dynamics of mammalian spinal locomotor networks
27. Author Correction: A community-based transcriptomics classification and nomenclature of neocortical cell types
28. Publisher Correction: A community-based transcriptomics classification and nomenclature of neocortical cell types
29. Locomotion: Circuits and Physiology
30. R
31. Neuronal calcium-binding proteins 1/2 localize to dorsal root ganglia and excitatory spinal neurons and are regulated by nerve injury
32. Brainstem Circuits for Locomotion
33. Optogenetic dissection reveals multiple rhythmogenic modules underlying locomotion
34. Brainstem Circuits for Locomotion
35. Identification of Vulnerable Interneuron Subtypes in 15q13.3 Microdeletion Syndrome Using Single-Cell Transcriptomics
36. Medial septal dysfunction by Aβ-induced KCNQ channel-block in glutamatergic neurons
37. Identification of Vulnerable Interneuron Subtypes in 15q13.3 Microdeletion Syndrome Using Single-Cell Transcriptomics
38. Neuromodulation of Small Neural Networks in Crustacea
39. Organization of left–right coordination of neuronal activity in the mammalian spinal cord: Insights from computational modelling
40. Author Correction:A community-based transcriptomics classification and nomenclature of neocortical cell types (Nature Neuroscience, (2020), 23, 12, (1456-1468), 10.1038/s41593-020-0685-8)
41. Dual-mode operation of neuronal networks involved in left-right alternation
42. Deep ensemble model for segmenting microscopy images in the presence of limited labeled data
43. Differential contribution of V0 interneurons to execution of rhythmic and non-rhythmic motor behaviors
44. Pedunculopontine Chx10+neurons control global motor arrest in mice
45. Early delivery and prolonged treatment with nimodipine prevents the development of spasticity after spinal cord injury in mice
46. V1 spinal neurons regulate the speed of vertebrate locomotor outputs
47. Differential Contribution of V0 Interneurons to Execution of Rhythmic and Nonrhythmic Motor Behaviors
48. EphA4 defines a class of excitatory locomotor-related interneurons
49. Publisher Correction: A community-based transcriptomics classification and nomenclature of neocortical cell types
50. Modelling genetic reorganization in the mouse spinal cord affecting left–right coordination during locomotion
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