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77 results on '"Patrick J. Whelan"'

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1. Contributions of h- and Na+/K+ Pump Currents to the Generation of Episodic and Continuous Rhythmic Activities

2. Towards a connectome of descending commands controlling locomotion

3. Contributions of h- and Na

4. A dynamic role for dopamine receptors in the control of mammalian spinal networks

5. Contributions of h- and Na+/K+ pump currents to the generation of episodic and continuous rhythmic activities

6. A point mutation in Ttc26 causes lumbar spinal cord fusion and synchronous hind-limb locomotion in hop mice

7. Visual Gait Lab: A user-friendly approach to gait analysis

8. A tale of many models. Which one creates the best of times?

9. Contributors

11. Retracing your footsteps: developmental insights to spinal network plasticity following injury

12. An economical solution to record and control wheel-running for group-housed mice

13. Modulatory and plastic effects of kinins on spinal cord networks

14. The Effects of a Ketogenic Diet on Sensorimotor Function in a Thoracolumbar Mouse Spinal Cord Injury Model

15. Fiber photometry for monitoring cerebral oxygen saturation in freely-moving rodents

16. Optogenetic Activation of A11 Region Increases Motor Activity

17. Orexinergic Modulation of Spinal Motor Activity in the Neonatal Mouse Spinal Cord

18. Parallel descending dopaminergic connectivity of A13 cells to the brainstem locomotor centers

19. Marking the differences in motoneurons

20. Integration of Descending Command Systems for the Generation of Context-Specific Locomotor Behaviors

21. Single-Cell Transcriptomics and Fate Mapping of Ependymal Cells Reveals an Absence of Neural Stem Cell Function

22. Decerebrate mouse model for studies of the spinal cord circuits

23. Identification of multisegmental nociceptive afferents that modulate locomotor circuits in the neonatal mouse spinal cord

24. Noradrenaline is a stress-associated metaplastic signal at GABA synapses

25. Serotonin 1A Receptors Alter Expression of Movement Representations

26. A case of Degos disease in pregnancy

27. A decerebrate adult mouse model for examining the sensorimotor control of locomotion

28. Anandamide modulates carotid sinus nerve afferent activity via TRPV1 receptors increasing responses to heat

29. Shining light into the black box of spinal locomotor networks

30. Diversification of Intrinsic Motoneuron Electrical Properties During Normal Development and Botulinum Toxin–Induced Muscle Paralysis in Early Postnatal Mice

31. Endogenous extracellular serotonin modulates the spinal locomotor network of the neonatal mouse

32. Locomotor networks are targets of modulation by sensory transient receptor potential vanilloid 1 and transient receptor potential melastatin 8 channels

33. Interaction Between Developing Spinal Locomotor Networks in the Neonatal Mouse

34. Brainstem modulation of locomotion in the neonatal mouse spinal cord

35. Monoaminergic Control of Cauda-Equina-Evoked Locomotion in the Neonatal Mouse Spinal Cord

36. Development of an Inhibitory Interneuronal Circuit in the Embryonic Spinal Cord

37. Modulation of Locomotor Activity by Multiple 5-HT and Dopaminergic Receptor Subtypes in the Neonatal Mouse Spinal Cord

38. Peptidergic Activation of Locomotor Pattern Generators in the Neonatal Spinal Cord

39. Electromyogram recordings from freely moving animals

40. Tissue PO2 and the effects of hypoxia on the generation of locomotor-like activity in the in vitro spinal cord of the neonatal mouse

41. Dopaminergic modulation of locomotor network activity in the neonatal mouse spinal cord

42. Case 18-2014: A man with a rash, myalgia, and weakness

43. Characterization of A11 neurons projecting to the spinal cord of mice

44. Dopamine: a parallel pathway for the modulation of spinal locomotor networks

45. Properties of Rhythmic Activity Generated by the Isolated Spinal Cord of the Neonatal Mouse

46. New developments in the etiopathogenesis and treatment of HIV-related kaposi’s sarcoma

47. Comparison of the effects of stimulating extensor group I afferents on cycle period during walking in conscious and decerebrate cats

48. Control of Neonatal Spinal Networks by Nociceptors: A Potential Role for TRP Channel Based Therapies

49. CONTROL OF LOCOMOTION IN THE DECEREBRATE CAT

50. Identification of multisegmental nociceptive afferents that modulate locomotor circuits in the neonatal mouse spinal cord

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