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Yu, L.C. and Han, J.S. (1990), Habenula as a relay in the descending pathway from
  nucleus-accumbens to periaqueductal gray subserving antinociception. International Journal of
     Neuroscience, 54 (3-4), 245-251.
Document type: Article Language: English Cited references: 12 Time cited: 15 Times self cited: 6
Reprint Address: Yu, LC (reprint author), Beijing Med Univ, Dept Physiol, Beijing 100083, Peoples
R China


1.    Munn, E.M., Harte, S.E., Lagman, A. and Borszcz, G.S. (2009), Contribution of the
      Periaqueductal Gray to the Suppression of Pain Affect Produced by Administration of
      Morphine Into the Intralaminar Thalamus of Rat. Journal of Pain, 10 (4), 426-435.
2.    Luo, F. and Wang, J.Y. (2008), Modulation of central nociceptive coding by acupoint
      stimulation. Neurochemical Research, 33 (10), 1950-1955.
3.    Li, J.J. and Yu, L.C. (2006), Anti-nociceptive role of neuropeptide Y in the nucleus accumbens
      in rats with inflammation, an effect modulated by mu- and kappa-opioid receptors. Progress in
      Natural Science, 16 (2), 133-141.
4.    Ellison, G. (2002), Neural degeneration following chronic stimulant abuse reveals a weak link
      in brain, fasciculus retroflexus, implying the loss of forebrain control circuitry. European
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5.    Schmidt, B.L., Tambeli, C.H., Levine, J.D. and Gear, R.W. (2002), mu/delta Cooperativity and
      opposing kappa-opioid effects in nucleus accumbens-mediated antinociception in the rat.
      European Journal of Neuroscience, 15 (5), 861-868.
6.    Li, N., Lundeberg, T. and Yu, L.C. (2001), Involvement of CGRP and CGRP1 receptor in
      nociception in the nucleus accumbens of rats. Brain Research, 901 (1-2), 161-166.
7.    Zhang, Y.X., Lundeberg, T. and Yu, L.C. (2000), Involvement of neuropeptide Y and Y1
      receptor in antinociception in nucleus raphe magnus of rats. Regulatory Peptides, 95 (1-3),
      109-113.
8.    Hu, J.Y. and Jin, G.Z. (2000), Arcuate nucleus of hypothalamus involved in analgesic action of
      l-THP. Acta Pharmacologica Sinica, 21 (5), 439-444.
9.    Burkey, A.R., Carstens, E. and Jasmin, L. (1999), Dopamine reuptake inhibition in the rostral
    agranular insular cortex produces antinociception. Journal of Neuroscience, 19 (10),
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10. Ellison, G. (1994), Stimulant-Induced Psychosis, the Dopamine Theory of Schizophrenia, and
    the Habenula. Brain Research Reviews, 19 (2), 223-239.
11. Yu, L.C. and Cai, Y.P. (1993), Arousal Following Intra-Preoptic Area Administration of
    Naltrexone, Ici 174864 Or Nor-Bni in Hibernating Ground-Squirrels. Behavioural Brain
    Research, 57 (1), 31-35.
12. Li, Y.Q., Takada, M. and Mizuno, N. (1993), Demonstration of Habenular Neurons Which
    Receive Afferent-Fibers from the Nucleus-Accumbens and Send Their Axons to the Midbrain
      Periaqueductal Gray. Neuroscience Letters, 158 (1), 55-58.
13. Yu, L.C. and Cai, Y.P. (1993), Effects of Opioid Receptors Antagonists Administration to
    Suprachiasmatic Nucleus on Hibernation of Ground-Squirrels Citellus-Dauricus. Comparative
    Biochemistry and Physiology C-Pharmacology Toxicology & Endocrinology, 104 (2),
    249-252.
14. Ma, Q.P., Shi, Y.S. and Han, J.S. (1992), Further-Studies on Interactions Between
    Periaqueductal Gray, Nucleus-Accumbens and Habenula in Antinociception. Brain Research,
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15. Sandyk, R. (1991), Relevance of the Habenular Complex to Neuropsychiatry - A Review and
    Hypothesis. International Journal of Neuroscience, 61 (3-4), 189-219.

				
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