OPIATE ANALGESIA AND DESCENDING CONTROL-SYSTEMS
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[1] Anthony H. Dickenson,et al. Diffuse noxious inhibitory controls (DNIC). II. Lack of effect on non-convergent neurones, supraspinal involvement and theoretical implications , 1979, PAIN.
[2] J. McKenzie,et al. The effects of morphine and pethidine on somatic evoked responses in the midbrain of the cat, and their relevance to analgesia , 1962 .
[3] J. Goldfarb,et al. Enhancement of reflexes by naloxone in spinal cats , 1976, Neuropharmacology.
[4] G. Bennett,et al. Inhibition of spinal cord interneurons by narcotic microinjection and focal electrical stimulation in the periaqueductal gray matter , 1979, Brain Research.
[5] W. Willis,et al. Postsynaptic inhibition of primate spinothalamic neurons by stimulation in nucleus raphe magnus , 1981, Brain Research.
[6] J. Heavner. Jamming spinal sensory input: Effects of anesthetic and analgesic drugs in the spinal cord dorsal horn , 1975, PAIN.
[7] J. Besson,et al. Depressive effects of morphine upon lamina V cells activities in the dorsal horn of the spinal cat , 1975, Brain Research.
[8] J. Besson,et al. Effect of naloxone upon diffuse noxious inhibitory controls (DNIC) in the rat , 1981, Brain Research.
[9] H. Fields,et al. Endogenous pain control mechanisms: Review and hypothesis , 1978, Annals of neurology.
[10] J. Besson,et al. Differential effects of morphine on responses of dorsal horn lamina V type cells elicited by A and C fibre stimulation in the spinal cat , 1976, Brain Research.
[11] H. Fields,et al. Naloxone dose dependently produces analgesia and hyperalgesia in postoperative pain , 1979, Nature.
[12] I. Jurna. THE EFFECT OF MORPHINE ON THE DISCHARGE OF MUSCLE SPINDLES WITH INTACT MOTOR INNERVATION. , 1965, International journal of neuropharmacology.
[13] J. Besson,et al. Diffuse noxious inhibitory controls (DNIC). Effects on trigeminal nucleus caudalis neurones in the rat , 1980, Brain Research.
[14] I. Starr,et al. STUDIES ON THE RELIEF OF PAIN BY COUNTERIRRITATION. , 1941, The Journal of clinical investigation.
[15] Anthony H. Dickenson,et al. Diffuse noxious inhibitory controls (DNIC). I. Effects on dorsal horn convergent neurones in the rat , 1979, PAIN.
[16] G. Bennett,et al. Behavioral and physiological studies of non-narcotic analgesia in the rat elicited by certain environmental stimuli , 1978, Brain Research.
[17] J. Besson,et al. Modifications of dorsal horn cell activities in the spinal cord, after intra‐arterial injection of bradykinin , 1972, The Journal of physiology.
[18] H. Wolff,et al. STUDIES ON PAIN. A NEW METHOD FOR MEASURING PAIN THRESHOLD: OBSERVATIONS ON SPATIAL SUMMATION OF PAIN , 1940, The Journal of clinical investigation.
[19] U. Lindblom,et al. Are the endorphins active in clinical pain states? Narcotic antagonism in chronic pain patients , 1979, Pain.
[20] W. Willis,et al. Primary afferent depolarization of identified cutaneous fibers following stimulation in medial brain stem. , 1979, Journal of neurophysiology.
[21] W. Chance,et al. Effects of medial raphe and raphe magnus lesions on the analgesic activity of morphine and methadone , 1978, Psychopharmacology.
[22] J. Besson,et al. Diffuse noxious inhibitory controls (DNIC) in the rat with or without pCPA pretreatment , 1981, Brain Research.
[23] M. Glusman,et al. Aversive thresholds following midbrain lesions. , 1968, Journal of comparative and physiological psychology.
[24] L. Lasagna. Drug Interaction in the Field of Analgesic Drugs , 1965, Proceedings of the Royal Society of Medicine.
[25] W. Buckett. Peripheral stimulation in mice induces short-duration analgesia preventable by naloxone. , 1979, European Journal of Pharmacology.