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1. Identification of adult spinal Shox2 neuronal subpopulations based on unbiased computational clustering of electrophysiological properties

2. Ipsilateral and Contralateral Interactions in Spinal Locomotor Circuits Mediated by V1 Neurons: Insights from Computational Modeling

3. Neural Interactions in Developing Rhythmogenic Spinal Networks: Insights From Computational Modeling

4. Flexor and Extensor Ankle Afferents Broadly Innervate Locomotor Spinal Shox2 Neurons and Induce Similar Effects in Neonatal Mice

5. Spinal Inhibitory Interneurons: Gatekeepers of Sensorimotor Pathways

6. The role of V3 neurons in speed-dependent interlimb coordination during locomotion in mice

7. Spinal Shox2 interneuron interconnectivity related to function and development

8. List of contributors

10. The role of V3 neurons in speed-dependent interlimb coordination during locomotion in mice

12. Spinal Inhibitory Interneurons: Gatekeepers of Sensorimotor Pathways

13. Spinal cord injury alters spinal Shox2 interneurons by enhancing excitatory synaptic input and serotonergic modulation while maintaining intrinsic properties in mouse

14. Rpsa Signaling Regulates Cortical Neuronal Morphogenesis via Its Ligand, PEDF, and Plasma Membrane Interaction Partner, Itga6

15. PEDF-Rpsa-Itga6 signaling regulates cortical neuronal morphogenesis

16. The Neuroplastic and Therapeutic Potential of Spinal Interneurons in the Injured Spinal Cord

17. Anatomical Recruitment of Spinal V2a Interneurons into Phrenic Motor Circuitry after High Cervical Spinal Cord Injury

18. Flexor and Extensor Ankle Afferents Broadly Innervate Locomotor Spinal Shox2 Neurons and Induce Similar Effects in Neonatal Mice

19. The rhythm section: An update on spinal interneurons setting the beat for mammalian locomotion

21. Delineating the Diversity of Spinal Interneurons in Locomotor Circuits

22. Peeling back the layers of locomotor control in the spinal cord

23. Locomotor Rhythm Generation Linked to the Output of Spinal Shox2 Excitatory Interneurons

24. Optogenetic dissection reveals multiple rhythmogenic modules underlying locomotion

25. Spinal Hb9::Cre-derived excitatory interneurons contribute to rhythm generation in the mouse

26. Functional organization of V2a-related locomotor circuits in the rodent spinal cord

27. Probing spinal circuits controlling walking in mammals

28. Activation of groups of excitatory neurons in the mammalian spinal cord or hindbrain evokes locomotion

29. Phenotypic diversity and expression of GABAergic inhibitory interneurons during postnatal development in lumbar spinal cord of glutamic acid decarboxylase 67–green fluorescent protein mice

30. Properties of Mouse Spinal Lamina I GABAergic Interneurons

31. Membrane Receptors Involved in Modulation of Responses of Spinal Dorsal Horn Interneurons Evoked by Feline Group II Muscle Afferents

33. Identification of minimal neuronal networks involved in flexor-extensor alternation in the mammalian spinal cord

34. Firing and Cellular Properties of V2a Interneurons in the Rodent Spinal Cord

35. Spinal cord injury causes plasticity in a subpopulation of lamina I GABAergic interneurons

36. Organization of the Mammalian Locomotor CPG: Review of Computational Model and Circuit Architectures Based on Genetically Identified Spinal Interneurons

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