Traumatically induced alterations in the oxygen fields in the canine spinal cord.
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Summary
The partial pressure of oxygen (PO2) was characterized in known anatomic loci of the canine spinal cord subsequent to impact injury using a sensitive oxygen microelectrode system and an increase in PO2 values was seen in both grey and white matter during the 3 h after injury.
- Type
- article
- Published
- 1982-03-01
- Cited by
- 14
- References
- 29
- OpenAlex
- https://openalex.org/W1972096993
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38562681
Keywords
Grey matter, White matter, Spinal cord, Spinal cord injury, Anesthesia
References
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- Review of the effect of spinal cord trama on the vessels and blood flow in the spinal cord.
- Experimental cervical myelopathy: effects of compression and ischemia on the canine cervical cord.
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- Review of the measurement of normal spinal cord blood flow.
- Blood flow in normal and injured monkey spinal cord.
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- The pathophysiological response to spinal cord injury. The current status of related research.
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- Oxygen fields in specific spinal loci of the canine spinal cord.
- Oxygen electrode design criteria and performance characteristics: recessed cathode.
Cited by
- Spinal cord repair: is tissue oxygenation an important variable?
- Human neural precursor cells in spinal cord repair
- Spinal cord contusion models.
- Extracellular calcium activity in the injured spinal cord.
- Improvement in injury induced hypocalcia by high-dose naloxone intervention.
- A pharmacological analysis of the pathophysiological mechanisms of posttraumatic spinal cord ischemia.
- Oxygen transport in intraspinal fetal grafts: graft-host relations.
- From the bench to the body: key issues associated with research aimed at a cure for SCI.
- Cell therapy for spinal cord injury, studies of motor and sensory systems
- Pathophysiology of spinal cord trauma.
- Consequences of differential macrophage activation after spinal cord trauma
- FMISO-PET-derived brain oxygen tension maps: application to glioblastoma and less aggressive gliomas
- The effects of brain-derived neurotrophic factor and intraspinal marrow stromal cell transplantation in a rat model of experimental spinal cord injury
- Biochemistry of the Spinal Cord
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