Spinal cord glia and interleukin-1 do not appear to mediate persistent allodynia induced by intramuscular acidic saline in rats
Journal Article
Overview
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Animal Diseases - Disease Models, Animal
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Animals
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Behavioral Disciplines and Activities - Reaction Time
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Biological Factors - Interleukin 1 Receptor Antagonist Protein
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Biological Factors - Interleukin-10
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Biological Factors - Interleukin-1beta
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Biological Factors - Interleukin-1beta
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Biological Therapy - Genetic Therapy
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Biomarkers
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Cells - Neuroglia
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Cells - Nociceptors
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Chlorine Compounds - Sodium Chloride
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Citrates
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Genetic Engineering - Genetic Therapy
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Gliosis
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Injections, Intramuscular
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Injections, Spinal
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Investigative Techniques - Reaction Time
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Male
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Models, Animal - Disease Models, Animal
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Models, Biological - Disease Models, Animal
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Nerve Tissue Proteins
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Nervous System - Neuroglia
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Nervous System - Nociceptors
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Nervous System Diseases - Hyperalgesia
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Nervous System Diseases - Pain, Intractable
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Nervous System Physiological Phenomena - Reaction Time
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Pain Measurement
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Peptides - Interleukin 1 Receptor Antagonist Protein
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Peptides - Interleukin-10
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Peptides - Interleukin-1beta
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Peptides - Interleukin-1beta
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Peripheral Nervous System - Nociceptors
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Physical Stimulation
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Proteins - Interleukin 1 Receptor Antagonist Protein
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Proteins - Interleukin-10
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Proteins - Interleukin-1beta
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Proteins - Interleukin-1beta
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Psychological Phenomena and Processes - Reaction Time
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Rats
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Rats, Sprague-Dawley
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Signs and Symptoms - Hyperalgesia
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Signs and Symptoms - Pain, Intractable
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Sodium Compounds - Sodium Chloride
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Spinal Cord
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Date in CU Experts
Full Author List
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Ledeboer A; Mahoney JH; Milligan ED; Martin D; Maier SF; Watkins LR
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