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1.
// Beijing yike daxue xuebao, 1999. Vol. 31, N 3.-С.212-215

2.
Huang (-)-Stepholidine: A dopamine receptor antagonist shows agonistic effect on rotational behavior in 6-hydroxydopamine-lesioned rats // Чжунго яоли сюэбао =Acta Pharmacol. Sin., 1992. Vol. 13, N 1.-С.17-22

3.
Sollenberger Randy L. A comparative study of rotational and stereoscopic computer graphic depth cues // Proc. Human Factors Soc. 35th Annu. Meet. San Francisco, Calif., Sept. 2-6, 1991. -Santa-Monica (Calif.], 1991, Vol. 2.-С.1452-1456

4.
Murata T. A model for bacterial flagellar motor: free energy transduction and self-organization of rotational motion // J. Theor. Biol., 1989. Vol. 139, N 4.-С.531-559

5.
Crenshaw Hugh C. A new look at locomotion in microorganisms: Rotating and translating // Amer. Zool., 1995. Vol. 35, N 5.-С.4

6.
Crenshaw Hugh C. A new look at locomotion in microorganisms: Rotating and translating // Amer. Zool., 1995. Vol. 35, N 5.-С.4

7.
Action sites of rotation and unit firing induced by l-stepholidine and DA agonists in basal ganglia of 6-OHDA-lesioned rats // Acta Pharmacol. Sin., 1999. Vol. 20, N 11.-С.979-986

8.
Action sites of rotation and unit firing induced by l-stepholidine and DA agonists in basal ganglia of 6-OHDA-lesioned rats // Acta Pharmacol. Sin., 1999. Vol. 20, N 11.-С.979-986

9.
Acute intracerebroventricular administration of palmitoylethanolamide, an endogenous peroxisome proliferator-activated receptor-'альфа' agonist, modulates carrageenan-induced paw edema in mice // J. Pharmacol. and Exp. Ther., 2007. Vol. 322, N 3.-С.1137-1143

10.
Adenosine A[2A] receptor antagonists KF17837 and KW-6002 potentiate rotation induced by dopaminergic drugs in hemi-Parkinsonian rats // Eur. J. Pharmacol., 2000. Vol. 408, N 3.-С.249-255

11.
Mathur R. Adenosinergic and dopaminergic interaction in nigrostriatum in FeCl[3]-induced model of Parkinsonism in rats // Meth. and Find. Exp. and Clin. Pharmacol., 1999. Vol. 21, N 6.-С.435-439

12.
Mathur R. Adenosinergic and dopaminergic interaction in nigrostriatum in FeCl[3]-induced model of Parkinsonism in rats // Meth. and Find. Exp. and Clin. Pharmacol., 1999. Vol. 21, N 6.-С.435-439

13.
Amphetamine-induced hyper-activation in animals bearing intracerebral grafts of dopaminergic neurons: search for possible mechanisms // Restor. Neurol. and Neurosci, 1990. Vol. 1, N 2.-С.155

14.
McFarlane David K. An inexpensive automated system for the measurement of rotational behavior in small animals // Behav. Res. Meth, Instrum, and Comput., 1992. Vol. 24, N 3.-С.414-419

15.
Kaiser Mary K. Angular velocity discrimination // Percept. and Psychophys., 1990. Vol. 47, N 2.-С.149-156

16.
Basal and amphetamine-induced asymmetries in striatal dopamine release and metabolism: bilateral in vivo microdialysis in normal rats // Brain Res., 1988. Vol. 473, N 1.-С.161-164

17.
Matsuda Basic fibroblast growth factor ameliorates rotational behavior of substantia nigraltransplanted rats with lesions of the dopaminergic nigrostriatal neurons // Jap. J. Pharmacol., 1992. Vol. 59, N 3.-С.365-370

18.
Lange Klaus W. Behavioural effects and supersensitivity in the rat following intranigral MPTP and MPP+ administration // Eur. J. Pharmacol., 1990. Vol. 157, N 1.-С.57-61

19.
Day R.H. Binocular interaction in induced rotary motion // Austral. J. Psychol., 1988. Vol. 40, N 2.-С.159-164

20.
Martin-Iverson Mathew T. Brain-derived neurotrophic factor and neurotrophin-3 activate striatal dopamine and serotonin metabolism and related behaviors: interactions with amphetamine // J. Neurosci., 1994. Vol. 14, N 3.-С.1262- 1270

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