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1.
5-HT[3] receptors in the central amygdala mediate the modulation of thymus function in rats // Shengli xuebao, 2007. Vol. 59, N 1.-С.42-50

2.
Activation of 5-HT[1B] and 5-HT[1D] receptors modulates the excitatory vagal afferent input to nucleus tractus solitarius (NTS) neurones in anaesthetized rats // J. Physiol. Proc., 1998. Vol. 513.-С.78-79

3.
Chen Activation of 5-НТ[3] receptor by 1-phenylbiguanide increases dopamine release in the rat nucleus accumbens // Brain Res., 1991. Vol. 543, N 2.-С.354-357

4.
Higgins G.A. Behavioral effects of the 5-hydroxytryptamine[3] receptor agonists 1-phenylbiguanide and m-chlorophenylbiguanide in rats // J. Pharmacol. and Exp. Ther., 1993. Vol. 264, N 3.-С.1440-1449

5.
Higgins G.A. Behavioural effects of the 5-HT[3] receptor agonists 1-phenylbiguanide and m-chlorophenylbiguanide (mCPG) in rats // Brit. J. Pharmacol., 1992. Vol. 105, Suppl..-С.35Р

6.
Dulta A. Cardio-respiratory reflexes evoked by phenylbiquanide in rats involve vagal afferents which are not sensitive to capsaicin // Acta physiol., 2010. Vol. 200, N 1.-С.87-95

7.
Kennett G.A. Effect of 5-HT[3] receptor agonists on rat food intake // Brit. J. Pharmacol., 1992. Vol. 105, Suppl..-С.227Р

8.
Effects of the central serotonin receptor agonists on locomotor activity in animal model of attention deficit hyperactivity disorder (ADHD) // Pol. J. Pharmacol., 2000. Vol. 52, N 2.-С.152

9.
Veelken Epicardial serotonin receptors in circulatory control in conscious Sprague-Dawley rats // Amer. J. Physiol., 1990. Vol. 258, N 2.-С.466-472

10.
Evidence that 5-HT[3] receptors in the nucleus tractus solitarius and other brainstem areas modulate the vagal bradycardia evoked by activaton of the von Bezold-Jarisch reflex in the anesthetized rat // Brain Res., 1998. Vol. 791, N 1-2.-С.229-234

11.
Evidence that 5-HT[3] receptors in the nucleus tractus solitarius and other brainstem areas modulate the vagal bradycardia evoked by activaton of the von Bezold-Jarisch reflex in the anesthetized rat // Brain Res., 1998. Vol. 791, N 1-2.-С.229-234

12.
Skinner Matthew R. Evidence that central 5-HT[1A] receptor are involved in the vagal bradycardia evoked by carotid chemo-receptor stimulation in anaesthetized rabbits // J. Physiol. Proc., 1997. Vol. 501.-С.72

13.
Evans R.G. Excitation of 5-hydroxytryptamine[3] receptors and nicotinic ganglionic cholinoceptors on vagal cardiopulmonary afferents in rabbits // Eur. J. Pharmacol., 1990. Vol. 183, N 3.-С.1111

14.
Ong E.G.P. Further investigation of the rol central 5-HT[1] receptors in the reflex vagal bradycardia elicited by i. v. phenylbiguanide in anaesthetized rats // Brit. J. Pharmacol. -Мфиш, 1992. Vol. 107, Proc. Suppl..-С.15р

15.
Intracardiac phenylbiguanide causes excitation of spinal neurons by activation of cardiac sympathetic afferents // Eur. J. Pharmacol., 1992. Vol. 216, N 1.-С.119-122

16.
McQueen D.S. Involvement of 5-HT[3] receptors in responses of cat carotid body chemoreceptors to phenylbiguanide // J. Physiol.. -Gr. Brit., 1988. Vol. 401.-С.Р86

17.
Stenger A. Lack of protection by 5-HT3 antagonists against phenylbiguanide induced emesis in pigeons // Fundam. and clin. pharmacol., 1991. Vol. 5, N 9.-С.834

18.
Todorovic Slobodan M. Pharmacological characterization of 5-hydroxytryptamine[2] and 5-hydroxytryptamine[3] receptors in rat dorsal root ganglion cells // J. Pharmacol. and Exp. Ther., 1990. Vol. 254, N 1.-С.109-115

19.
Phenyl biguanide does not inhibit locomotion in conscious rabbits // J. Appl. Physiol., 1995. Vol. 79, N 4.-С.1346-1350

20.
Armstrong D.J. Phenylbiguanide (PBG) does not decrease airway conductance in spontaneously breathing, pentobarbitone-anaestheized rabbits // J. Physiol., 1990. Vol. 426.-С.64

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