Synaptic Pathways to Phrenic Motoneurons Are Enhanced by Chronic Intermittent Hypoxia after Cervical Spinal Cord Injury
Open Access
- 1 April 2003
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 23 (7) , 2993-3000
- https://doi.org/10.1523/jneurosci.23-07-02993.2003
Abstract
Spinal hemisection at C2 reveals caudal synaptic pathways that cross the spinal midline (crossed phrenic pathways) and can restore inspiratory activity in ipsilateral phrenic motoneurons. Intermittent hypoxia induces plasticity in the cervical spinal cord, resulting in enhanced inspiratory phrenic motor output. We hypothesized that chronic intermittent hypoxia (CIH) (alternating 11% O2and air; 5 min periods; 12 hr per night; 7 nights) would strengthen crossed phrenic pathways. Experiments were performed on anesthetized, vagotomized, paralyzed, ventilated, and spinally injured (C2 hemisection) rats that were exposed to either normoxia or CIH before acute injury (preconditioning) or after chronic injury (postconditioning). Spontaneous inspiratory bursts or compound action potentials evoked via stimulation of the ventrolateral funiculus (contralateral to injury) were recorded in both phrenic nerves. Spontaneous or evoked activity in crossed phrenic pathways were minimal or absent in all acutely injured rats regardless of preconditioning. In rats postconditioned with normoxia, crossed phrenic inspiratory bursts were observed occasionally during baseline conditions and always during chemoreceptor stimulation (hypoxia and hypercapnia). However, CIH postconditioned rats had substantially larger crossed phrenic inspiratory bursts during baseline, hypoxia, and hypercapnia (allp< 0.05 vs normoxic group). Short-latency (0.7 msec) evoked crossed phrenic potentials were also enhanced by CIH conditioning in chronically injured rats (p< 0.05). We conclude that CIH induced spinal cord plasticity-enhanced phrenic motor output. This plasticity required preconditions established by chronic spinal injury.Keywords
This publication has 41 references indexed in Scilit:
- Induced recovery of hypoxic phrenic responses in adult rats exposed to hyperoxia for the first month of lifeThe Journal of Physiology, 2001
- Retraining the injured spinal cordThe Journal of Physiology, 2001
- Alkylxanthine-Induced Recovery of Respiratory Function Following Cervical Spinal Cord Injury in Adult RatsExperimental Neurology, 2001
- Spontaneous Functional Recovery in a Paralyzed Hemidiaphragm Following Upper Cervical Spinal Cord Injury in Adult RatsNeurorehabilitation and Neural Repair, 1999
- Theophylline-induced recovery in a hemidiaphragm paralyzed by hemisection in rats: Contribution of adenosine receptorsNeuropharmacology, 1998
- Ultrastructural Changes in the Rat Phrenic Nucleus Developing within 2 h after Cervical Spinal Cord HemisectionExperimental Neurology, 1993
- Identification of the axon pathways which mediate functional recovery of a paralyzed hemidiaphragm following spinal cord hemisection in the adult ratExperimental Neurology, 1992
- Repetitive, episodic hypoxia causes diurnal elevation of blood pressure in rats.Hypertension, 1992
- Biometry.Systematic Zoology, 1982
- The role of cervical afferent nerve fiber inhibition of the crossed phrenic phenomenonExperimental Neurology, 1981