Endogenous pain control systems: brainstem spinal pathways and endorphin circuitry.
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- Type
- review
- Published
- 1984-03-01
- Cited by
- 2,691
- References
- 84
- OpenAlex
- https://openalex.org/W2138512124
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37469265
Keywords
Brainstem, Neuroscience, Endogeny, Endogenous opioid, Central nervous system
References
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- Ultrastructural localization and biochemical features of immunoreactive LEU-enkephalin in monkey dorsal horn
- The sites of origin brain stem neurotensin and serotonin projections to the rodent nucleus raphe magnus
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- The origin of descending pathways in the dorsolateral funiculus of the spinal cord of the cat and rat: Further studies on the anatomy of pain modulation
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- Opiate receptors in cultures of fetal mouse dorsal root ganglia (DRG) and spinal cord: predominance in DRG neurites.
- Opiate receptor binding in primate spinal cord: distribution and changes after dorsal root section.
- Naloxone dose dependently produces analgesia and hyperalgesia in postoperative pain
- Naloxone Fails to antagonize nitrous oxide analgesia for clinical pain
- The mechanism of placebo analgesia.
- Pain sensitivity and opioid activity in genetically and experimentally hypertensive rats.
- The role of acetylcholine in the function of the nucleus raphe magnus and in the interaction of this nucleus with the periaqueductal gray.
- Lumbar intrathecal naloxone blocks analgesia produced by microstimulation of the ventromedial medulla in the rat
- The distribution of nine peptides in rat spinal cord with special emphasis on the substantia gelatinosa and on the area around the central canal (laminaX)
- U-50488H, a pure kappa receptor agonist with spinal analgesic loci in the mouse.
- N. raphe magnus lesions disrupt stimulation-produced analgesia from ventral but not dorsal midbrain areas in the rat.
Cited by
- In vivo release of serotonin in cat dorsal vagal complex and cervical ventral horn induced by electrical stimulation of the medullary raphe nuclei.
- The development of stimulation-produced analgesia (SPA) in the rat.
- Course and mode of action of descending system conveying nucleus raphe magnus induced inhibition of flexion reflex in rats.
- The role of descending inhibition in morphine-induced analgesia.
- Localization of thyrotropin-releasing hormone prohormone messenger ribonucleic acid in rat brain in situ hybridization.
- Attenuation of morphine analgesia by the S2 antagonists, pirenperone and ketanserin.
- Hypothalamic control of nocireceptive and other neurones in the marginal layer of the dorsal horn of the medulla (trigeminal nucleus caudalis) in the rat
- Desipramine enhances opiate postoperative analgesia
- Cytochemical studies of the neural circuitry underlying pain and pain control.
- Reward and its control by dynorphin peptides.
- Neonatal guanethidine sympathectomy suppresses autotomy and prevents changes in spinal and supraspinal monoamine levels induced by peripheral deafferentation in rats
- Participation of opioid and monoaminergic mechanisms on the antinociceptive effect induced by tricyclic antidepressants in two behavioural pain tests in mice.
- Subcutaneous formalin produces centrifugal hyperalgesia at a non-injected site via the NMDA-nitric oxide cascade.
- Behavioral and neurochemical alterations following intracerebroventricular administration of anti-serotonin antibodies in adult Balb/c mice.
- Prolonged noxious stimulation increases periaqueductal gray NMDA MRNA expression: A hybridization study using two different rat models for nociception
- The organization of preoptic-medullary circuits in the male rat: evidence for interconnectivity of neural structures involved in reproductive behavior, antinociception and cardiovascular regulation.
- Evaluation of electronic dental anesthesia in children.
- Supraspinal metabolic activity changes in the rat during adjuvant monoarthritis.
- The role of corticotropin‐releasing factor in pain and analgesia
- Opioid propeptide mRNA content and receptor density in the brains of AA and ANA rats.
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