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Ida T. Possible involvement of orexin in the stress reaction in rats. /Ida T., Nakahara K., Murakami T., Hanada R., Nakazato M., Murakami N. // BiochemBiophys Res Commun. 2000; 270:318–23. []

Ikemoto S. Dissociations between appetitive and consummatory responses by pharmacological manipulations of rewardrelevant brain regions /Ikemoto S., Panksepp J. // Behav. Neurosci. 1996. V.110. №2. P.331–345.

Jerlhag E. Alpha-conotoxin MII-sensitive nicotinic acetylcholine receptors are involved in mediating the ghrelin-induced locomotor stimulation and dopamine overflow in nucleus accumbens. / Jerlhag, E., Egecioglu, E., Dickson, S.L., Svensson, L., Engel, J.A. // European Neuropsychopharmacolology 18 (7) – 2008 – Р.508–518.

Jerlhag E. Ghrelin receptor antagonism attenuates cocaine- and amphetamine-induced locomotor stimulation, accumbal dopamine release, and conditioned place preference. /Jerlhag, E., Egecioglu, E., Dickson, S.L., Engel, J.A. // Psychopharmacology (Berl) 211 (4) – 2010 – Р.415–422.

Jerlhag E. Glutamatergic regulation of ghrelin-induced activation of the mesolimbic dopamine system. /Jerlhag, E., Egecioglu, E., Dickson, S.L., Engel, J.A. // AddictionBiology 16 (1) – 2011 – Р.82–91.

Jerlhag, E. Ghrelin administration into tegmental areas stimulates locomotor activity and increases extracellular concentration of dopamine in the nucleus accumbens. /Jerlhag, E., Egecioglu, E., Dickson, S.L., Douhan, A., Svensson, L., Engel, J.A. // Addiction Biology 12 (1) – 2007 – Р.6–16.

Jerlhag, E. Ghrelin stimulates locomotor activity and accumbal dopamine-overflow via central cholinergic systems in mice: implications for its involvement in brain reward. /Jerlhag, E., Egecioglu, E., Dickson, S.L., Andersson, M., Svensson, L., Engel, J.A. // Addiction Biology 11 (1) – 2006a – Р.45–54.

Jerlhag, E. Requirement of central ghrelin signaling for alcohol reward. /Jerlhag, E., Egecioglu, E., Landgren, S., Salome, N., Heilig, M., Moechars, D., Datta., R., Perrissoud, D., Dickson, S.L., Engel, J.A. // Proceedings of the National Academy of Sciences of the United States of America 106 (27) – 2009 – Р.11318–11323.

Jerlhag, E. Role of the subunit composition of central nicotinic acetylcholine receptors for the stimulatory and dopamine-enhancing effects of ethanol. /Jerlhag, E., Grotli, M., Luthman, K., Svensson, L., Engel, J.A. // Alcohol and Alcoholism 41 (5) - 2006b – Р.486–493.

Jerlhag, E. Systemic administration of ghrelin induces conditioned place preference and stimulates accumbal dopamine. /Jerlhag, E. // Addiction Biology 13 (3–4) – 2008 – Р.358–363.

Jerlhag, E. The alcohol induced locomotor stimulation and accumbal dopamine release is suppressed in ghrelin knockout mice. /Jerlhag, E., Landgren, S., Egecioglu, E., Dickson, S.L., Engel, J.A. // Alcohol, in press (Epub ahead of print) doi:10.1016/j.alcohol.2010.10.002.

Jiang, H. Ghrelin amplifies dopamine signaling by cross talk involving formation of growth hormone secretagogue receptor/ dopamine receptor subtype 1 heterodimers. /Jiang, H., Betancourt, L., Smith, R.G. // Molecular Endocrinology 20(8) – 2006 – Р.1772–1785.

Jones G.A. Conduction velocities and membrane properties of different classes of rat septohippocampal neurons recorded in vitro / Jones G.A., Norris S.K., Henderson Z. // J. Physiol. 1999. V.517. P.867–877.

Jhren, O. Preproorexin and orexin receptor mRNAs are differentially expressed in peripheral tissues of male and female rats. /O. Jhren, S. J. Neidert, M. Kummer et al. // Endocrinology. – 2001. – Vol.142. – P.3324–3331.

Kalivas P.W. Brain circuitry and the reinstatement of cocaine-seeking behavior. / Kalivas P.W., McFarland K. // Psychopharmacology (Berl) 2003;168:44–56. []

Kalivas P.W. Neural systems for behavioral activation and reward. /Kalivas P.W., Nakamura M. // Curr. Opin. Neurobiol. 1999. V.9. P.223–227.

Kaur, S. Ghrelin receptor antagonism decreases alcohol consumption and activation of perioculomotor urocortin-containing neurons. /Kaur, S., Ryabinin, A.E. // Alcoholism – Clinical and Experimental Research 34 (9) – 2010 – Р.1525–1534.

Keck M.E. The anxiolytic effect of the CRH(1) receptor antagonist R121919 depends on innate emotionality in rats. /Keck M.E., Welt T., Wigger A. et al. // Eur. J. Neurosci. 2001. V. 13. P.373–380.

Kelley A.E. The neuroscience of natural rewards: relevance to addictive drugs. /Kelley A.E., Berridge K.C. // J. Neurosci. 2002. V.22. №9. P.3306–3311.

Kojima M. Ghrelin is a growth-hormone-releasing acylated peptide from stomach. /Kojima, M., Hosoda, H., Date, Y., Nakazato, M., Matsuo, H., Kangawa, K. // Nature 402(6762) – 1999 – Р.656–660.

Kojima M. Ghrelin is a growth-hormone-releasing acylated peptide from stomach. /Kojima M, Hosoda H, Date Y, Nakazato M, Matsuo H, et al // Nature. 1999; 402:656–660. [PubMed]

Koob G.F. A role for brain stress systems in addiction. /Koob G.F. // Neuron 2008; 59:11–34.

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