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1.
Alcohols increase activation and stabilize the open state of 5-HT[3] receptors on NCB20 neuroblastoma cells: A kinetic and modeling study // Alcoholism, 1997. Vol. 21, N 3 Suppl..-С.6A

2.
Alcohols increase activation and stabilize the open state of 5-HT[3] receptors on NCB20 neuroblastoma cells: A kinetic and modeling study // Alcoholism, 1997. Vol. 21, N 3 Suppl..-С.6A

3.
Lovinger D.M. Alcohols increase the probability of opening of 5-HT[3] receptor-channels in NCB 20 neuroblastoma cells // Alcoholism, 1997. Vol. 21, N 3 Suppl..-С.7A

4.
Lovinger D.M. Alcohols increase the probability of opening of 5-HT[3] receptor-channels in NCB 20 neuroblastoma cells // Alcoholism, 1997. Vol. 21, N 3 Suppl..-С.7A

5.
Zhou Alcohols potentiate the function of 5-HT[3] receptor-channels on NCB-20 neuroblastoma cells by favouring and stabilizing the open channel state // J. Physiol., 1998. Vol. 507, N 2.-С.335-352

6.
Zhou Alcohols potentiate the function of 5-HT[3] receptor-channels on NCB-20 neuroblastoma cells by favouring and stabilizing the open channel state // J. Physiol., 1998. Vol. 507, N 2.-С.335-352

7.
Zhou Alcohols potentiate the function of 5-HT[3] receptor-channels on NCB-20 neuroblastoma cells by favouring and stabilizing the open channel state // J. Physiol., 1998. Vol. 507, N 2.-С.335-352

8.
Application of cryopreserved human hepatocytes in trichloroethylene risk assessment: Relative disposition of chloral hydrate to trichloroacetate and trichloroethanol // Environ. Health Perspect., 2006. Vol. 114, N 8.-С.1237-1242

9.
Application of cryopreserved human hepatocytes in trichloroethylene risk assessment: Relative disposition of chloral hydrate to trichloroacetate and trichloroethanol // Environ. Health Perspect., 2006. Vol. 114, N 8.-С.1237-1242

10.
Hu Arginine 246 of the pretransmembrane domain 1 region alters 2,2,2,-trichloroethanol action in the 5-hydroxytryptamine{3A} receptor // J. Pharmacol. and Exp. Ther., 2008. Vol. 324, N 3.-С.1011-1018

11.
Pedrozo Determinacao espectrofotometrica e cromatografica em fase gasosa de tricloretanol em urina // Rev. farm. e bioquim. Univ. Sao Paulo, 1993. Vol. 29, N 1.-С.47-52

12.
Johns Douglas O. Evaluation of dynamic headspace with gas chromatography/mass spectrometry for the determination of 1,1,1-trichloroethane, trichloroethanol, and trichloroacetic acid in biological samples // J Chromatogr. B, 2005. Vol. 817, N 2.-С.255-261

13.
In situ derivatization/solid-phase microextraction coupled with gas chromatography/negative chemical ionization mass spectrometry for the determination of trichloroethylene metabolites in rat blood // Rapid Commun. Mass Spectrom., 2008. Vol. 22, N 7.-С.1023-1031

14.
In situ derivatization/solid-phase microextraction coupled with gas chromatography/negative chemical ionization mass spectrometry for the determination of trichloroethylene metabolites in rat blood // Rapid Commun. Mass Spectrom., 2008. Vol. 22, N 7.-С.1023-1031

15.
Fisher Inhibition by chloral hydrate and trichloroethanol of AMPA-induced Ca{2+} influx in rat cultured cortical neurones // Eur. J. Pharmacol., 2000. Vol. 394, N 1.-С.41-45

16.
Fisher Inhibition by chloral hydrate and trichloroethanol of AMPA-induced Ca{2+} influx in rat cultured cortical neurones // Eur. J. Pharmacol., 2000. Vol. 394, N 1.-С.41-45

17.
Fisher Inhibition by chloral hydrate and trichloroethanol of AMPA-induced Ca{2+} influx in rat cultured cortical neurones // Eur. J. Pharmacol., 2000. Vol. 394, N 1.-С.41-45

18.
Questions - reponses. Le somnanbulisme peut-il etre un effet indesirable? // Mouit. hosp., 1992, N 47.-С.26

19.
Renal toxicity after chronic inhalation exposure of rats to trichloroethylene // Toxicol. Lett., 2002. Vol. 128, N 1-3.-С.243-247

20.
Muralidhara S. Simple method for rapid measurement of trichloroethylene and its major metabolites in biological samples // J Chromatgr. B, 1999. Vol. 732, N 1.-С.145-153

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