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1.
Larson Alice A. Modulation of kainic acid-induced activity in the mouse spinal cord by the amino terminus of substance P: Sensitivity to opioid antagonists // J. Pharmacol. and Exp. Ther., 1993. Vol. 265, N 1.-С.159-165

2.
Okano Pharmacological evidence for involvement of excitatory amino acids in aversive responses induced by intrathecal substance P in rats // Biol. and Pharm. Bull., 1993. Vol. 16, N 9.-С.861-865

3.
Analgesic effects of intrathecally-administered 3'альфа'-hydroxy-5'альфа'-pregnan-20-one in a rat mechanical visceral pain model // Life Sci., 1992. Vol. 50, N 14.-С.1007-1012

4.
Stanfa L.C. Increased potency of spinal opiates after peripheral inflammation in the halothane anaesthetized rat // J. Physiol., 1992. Vol. 446.-С.56

5.
Augmented responses to intrathecal nicotinic agonists in spontaneus hypertension // Hypertension., 1994. Vol. 24, N 5.-С.611-619

6.
Takano Chronic spinal infusion of dexmedetomidine, ST-91 and clonidine: spinal alpha[2] adrenoceptor subtypes and intrinsic activity // J. Pharmacol. and Exp. Ther., 1993. Vol. 264, N 1.-С.327-335

7.
The role of endogenous opioids as mediators of the hypothermic effects of intrathecally administered calcium and calcitonin gene-related peptide in mice // J. Pharmacol. and Exp. Ther., 1993. Vol. 266, N 3.-С.1407-1415

8.
Hoelzer D. Leukenzephalopathie nach intrathekaler Zytostatikagabe bei akuter lymphatischer Leukamie // DMW, 1994. Vol. 119, N 47.-С.1637

9.
Mydriatic and antinociceptive effects of intrathecal dexmedetomidine in conscious rats // Eur. J. Pharmacol., 1994. Vol. 253, N 1-2.-С.61-66

10.
Neuropathological findings after long-term intrathecal infusion of buprenorphine and bupivacaine for pain treatment in cancer patients // Eur. J. Pain., 1994. Vol. 15, N 4.-С.68-76

11.
Feldman David S. Localization of cholinergic neurons involved in the cardiovascular response to intrathecal injection of carbachol // Eur. J. Pharmacol., 1993. Vol. 250, N 3.-С.483-487

12.
Alhaider Abdulqader A. Intrathecal 5-methoxy-N,N-dimethyltryptamine in mice modulates 5-HT[1] and 5-HT[3] receptors // Eur. J. Pharmacol., 1993. Vol. 249, N 2.-С.151-160

13.
Feldman David S. Localization of cholinergic neurons involved in the cardiovascular response to intrathecal injection of carbachol // Eur. J. Pharmacol., 1993. Vol. 250, N 3.-С.483-487

14.
Effect of NMDA receptor antagonists on prostaglandin E[2]-induced hyperalgesia in conscious mice // Brain Res., 1995. Vol. 677, N 1.-С.138-144

15.
Smith Peter B. Interactions between 'ДЕЛЬТА'{9}-tetrahydrocannabinol and kappa opioids in mice // J. Pharmacol. and Exp. Ther., 1994. Vol. 268, N 3.-С.1381-1387

16.
Jang Use of 2-hydroxypropyl-'бета'-cyclodextrin as an intrathecal drug vehicle with opioids // J. Pharmacol. and Exp. Ther., 1992. Vol. 261, N 2.-С.592-600

17.
Role of vagal afferents and spinal pathways modulating inhibition of bradykinin-induced plasma extravasation by intrathecal nicotine // J. Neurophysiol., 1994. Vol. 72, N 3.-С.1199-1207

18.
Role of vagal afferents and spinal pathways modulating inhibition of bradykinin-induced plasma extravasation by intrathecal nicotine // J. Neurophysiol., 1994. Vol. 72, N 3.-С.1199-1207

19.
Stewart Peggy E. Evidence for delta opioid receptor subtypes in rat spinal cord: Studies with intrathecal naltriben, Cyclic [D-Pen{2}, D-Pen{5}] enkephalin and [D-Ala{2}, Glu{4}] deltorphin // J. Pharmacol. and Exp. Ther., 1993. Vol. 266, N 2.-С.820-827

20.
Garcia M.C. Spinal GABA-receptors mediate the cardiovascular action of intrathecal clonidine in the rat // Hypertension, 1995. Vol. 25, N 6.-С.1421

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