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Updated: May 9, 2026

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Spinal Cord Electrophysiology
Published on: January 18, 2010
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Episodic rhythmicity is generated by a distributed neural network in the developing mammalian spinal cord
Jonathan J Milla-Cruz1,2,3, Adam P Lognon1,2,3, Michelle A Tran1,2,3
1Hotchkiss Brain Institute, University of Calgary, Calgary, AB, Canada.
Iscience
|March 10, 2025
Summary
This study reveals that dopamine-induced episodic locomotor rhythms in neonatal mouse spinal cords arise from a distributed spinal interneuron network. This network
Area of Science:
- Neuroscience
- Spinal Cord Research
- Motor Control
Background:
- Spinal circuits generate rhythmic motor output for locomotion.
- Mechanisms underlying episodic locomotor behaviors are not fully understood.
Purpose of the Study:
- Investigate dopamine-induced episodic rhythms in isolated neonatal mouse spinal cords.
- Elucidate the neural network mechanisms responsible for these episodic behaviors.
Main Methods:
- Used isolated neonatal mouse spinal cord preparations.
- Induced episodic rhythms using dopamine.
- Performed electrical stimulation of dorsal roots and spinal cord transections/lesions.
- Recorded neural activity in spinal cord segments and axons.
Main Results:
- Episodic rhythms were mostly synchronous and rostro-caudally propagating.
- Dorsal root stimulation entrained rhythms, indicating afferent control.
- Rhythmicity persisted in isolated segments after transection or ventrolateral funiculus (VLF) lesions.
- Activity was independent of cholinergic, GABAergic, or dorsal inhibitory circuits.
Conclusions:
- A flexibly coupled, distributed spinal interneuron network underlies episodic rhythmicity.
- The ventrolateral funiculus (VLF)-coupled networks play a role.
- Findings provide a basis for understanding spinal circuit modulation in motor output diversity.
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