Εμφανίζονται 1 - 20 Αποτελέσματα από 309 για την αναζήτηση '"переломы костей"', χρόνος αναζήτησης: 0,70δλ Περιορισμός αποτελεσμάτων
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    Academic Journal

    Συγγραφείς: Korol, S.O., Matviichuk, B.V., Domansky, A.M.

    Πηγή: TRAUMA; Том 17, № 6 (2016); 76-80
    ТРАВМА; Том 17, № 6 (2016); 76-80

    Περιγραφή αρχείου: application/pdf

  6. 6
    Academic Journal

    Πηγή: Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics); Том 68, № 6 (2023); 85-93 ; Российский вестник перинатологии и педиатрии; Том 68, № 6 (2023); 85-93 ; 2500-2228 ; 1027-4065

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.ped-perinatology.ru/jour/article/view/1910/1439; Palamar J.J., Su M.K., Hoffman R.S. Characteristics of novel psychoactive substance exposures reported to New York City Poison Center, 2011–2014. Am J Drug Alcohol Abuse 2016; 42(1): 39–47. DOI:10.3109/00952990.2015.1106551; Wood K.E. Exposure to bath salts and synthetic tetrahydrocannabinol from 2009 to 2012 in the United States. J Pediatr 2013; 163(1): 213–216. DOI:10.1016/j.jpeds.2012.12.056; Ebrahim S.H., Gfroerer J. Pregnancy-related substance use in the United States during 1996–1998. Obstet Gynecol 2003; 101(2): 374–379. DOI:10.1016/s0029–7844(02)02588–7; Greenfield S.F., Manwani S.G., Nargiso J.E. Epidemiology of substance use disorders in women. Obstet Gynecol Clin North Am 2003; 30(3): 413–446. DOI:10.1016/s0889–8545(03)00072-x; Chang J.C., Holland C.L., Tarr J.A., Rubio D., Rodriguez K.L., Kraemer K.L. et al. Perinatal Illicit Drug and Marijuana Use. Am J Health Promot 2017; 31(1): 35–42. DOI:10.4278/ajhp.141215-QUAL-625; Gómez-Ruiz L.M., Marchei E., Rotolo M.C., Brunetti P., Mannocchi G., Acosta-López A. et al. Prevalence of Licit and Illicit Drugs Use during Pregnancy in Mexican Women. Pharmaceuticals (Basel) 2022; 15(3): 382. DOI:10.3390/ph15030382; Gunn J.K., Rosales C.B., Center K.E., Nuñez A., Gibson S.J., Christ C., Ehiri J.E. Prenatal exposure to cannabis and maternal and child health outcomes: a systematic review and meta-analysis. BMJ Open. 2016; 6(4): e009986. DOI:10.1136/bmjopen-2015–009986; Marchand G., Masoud A.T., Govindan M., Ware K., King A., Ruther S. et al. Birth Outcomes of Neonates Exposed to Marijuana in Utero: A Systematic Review and Meta-analysis. JAMA Netw Open 2022; 5(1): e2145653. DOI:10.1001/jamanetworkopen.2021.45653; Reece A.S., Hulse G.K. Epidemiological overview of multidimensional chromosomal and genome toxicity of cannabis exposure in congenital anomalies and cancer development. Sci Rep 2021; 11(1): 13892. DOI:10.1038/s41598–021–93411–5; Kalix P. A constituent of khat leaves with amphetamine-like releasing properties. Eur J Pharmacol 1980; 68(2): 213–215. DOI:10.1016/0014–2999(80)90326-x; Hadlock G.C., Webb K.M., McFadden L.M., Chu P.W., Ellis J.D., Allen S.C. et al. 4-Methylmethcathinone (mephedrone): neuropharmacological effects of a designer stimulant of abuse. J Pharmacol Exp Ther 2011; 339(2): 530–536. DOI:10.1124/jpet.111.184119; Pehek E.A., Schechter M.D., Yamamoto B.K. Effects of cathinone and amphetamine on the neurochemistry of dopamine in vivo. Neuropharmacology 1990; 29(12): 1171–1176. DOI:10.1016/0028–3908(90)90041-o; den Hollander B., Sundström M., Pelander A., Ojanperä I., Mervaala E., Korpi E.R., Kankuri E. Keto amphetamine toxicity-focus on the redox reactivity of the cathinone designer drug mephedrone. Toxicol Sci 2014; 141(1): 120–131. DOI:10.1093/toxsci/kfu108; López-Arnau R., Martínez-Clemente J., Rodrigo T., Pubill D., Camarasa J., Escubedo E. Neuronal changes and oxidative stress in adolescent rats after repeated exposure to mephedrone. Toxicol Appl Pharmacol 2015; 286(1): 27–35. DOI:10.1016/j.taap.2015.03.015; Buzhdygan T.P., Rodrigues C.R., McGary H.M., Khan J.A., Andrews A.M., Rawls S.M., Ramirez S.H. The psychoactive drug of abuse mephedrone differentially disrupts blood-brain barrier properties. J Neuroinflammation 2021; 18(1): 63. DOI:10.1186/s12974–021–02116-z; Martínez-Clemente J., López-Arnau R., Abad S., Pubill D., Escubedo E., Camarasa J. Dose and time-dependent selective neurotoxicity induced by mephedrone in mice. PLoS One 2014; 9(6): e99002. DOI:10.1371/journal.pone.0099002; Tarkowski P., Jankowski K., Budzyńska B., Biała G., Boguszewska-Czubara A. Potential pro-oxidative effects of single dose of mephedrone in vital organs of mice. Pharmacol Rep 2018; 70(6): 1097–1104. DOI:10.1016/j.pharep.2018.05.010; Naseri G., Fazel A., Golalipour M.J., Haghir H., Sadeghian H., Mojarrad M. et al. Exposure to mephedrone during gestation increases the risk of stillbirth and induces hippocampal neurotoxicity in mice offspring. Neurotoxicol Teratol 2018; 67: 10–17. DOI:10.1016/j.ntt.2018.03.001; Adám A., Gerecsei L.I., Lepesi N., Csillag A. Apoptotic effects of the ‘designer drug’ methylenedioxypyrovalerone (MDPV) on the neonatal mouse brain. Neurotoxicology 2014; 44: 231–236. DOI:10.1016/j.neuro.2014.07.004; Yang Z., Klionsky D.J. Mammalian autophagy: core molecular machinery and signaling regulation. Curr Opin Cell Biol 2010; 22(2): 124–131. DOI:10.1016/j.ceb.2009.11.014; Yang Z.J., Chee C.E., Huang S., Sinicrope F. Autophagy modulation for cancer therapy. Cancer Biol Ther 2011; 11(2): 169–176. DOI:10.4161/cbt.11.2.14663; Valente M.J., Amaral C., Correia-da-Silva G., Duarte J.A., Bastos M.L., Carvalho F. et al. Methylone and MDPV activate autophagy in human dopaminergic SH-SY5Y cells: a new insight into the context of β-keto amphetamines-related neurotoxicity. Arch Toxicol 2017; 91(11): 3663–3676. DOI:10.1007/s00204–017–1984-z; Matsunaga T., Morikawa Y., Kamata K., Shibata A., Miyazono H., Sasajima Y. et al. α-Pyrrolidinononanophenone provokes apoptosis of neuronal cells through alterations in antioxidant properties. Toxicology 2017; 386: 93–102. DOI:10.1016/j.tox.2017.05.017; Siedlecka-Kroplewska K., Wrońska A., Stasiłojć G., Kmieć Z. The Designer Drug 3-Fluoromethcathinone Induces Oxidative Stress and Activates Autophagy in HT22 Neuronal Cells. Neurotox Res 2018; 34: 388–400. DOI:10.1007/S12640– 018–9898-Y; Angoa-Pérez M., Kane M.J., Francescutti D.M., Sykes K.E., Shah M.M., Mohammed A.M. et al. Mephedrone, an abused psychoactive component of ‘bath salts’ and methamphetamine congener, does not cause neurotoxicity to dopamine nerve endings of the striatum. J Neurochem 2012; 120(6): 1097–1107. DOI:10.1111/j.1471–4159.2011.07632. x; Marusich J.A., Gay E.A., Stewart D.A., Blough B.E. Sex differences in inflammatory cytokine levels following synthetic cathinone self-administration in rats. Neurotoxicology 2022; 88: 65–78. DOI:10.1016/j.neuro.2021.11.002; Kim O.H., Jeon K.O., Jang E.Y. Alpha-pyrrolidinopentiothiophenone (α-PVT) activates the TLR-NF-κB-MAPK signaling pathway and proinflammatory cytokine production and induces behavioral sensitization in mice. Pharmacol Biochem Behav 2022; 221: 173484. DOI:10.1016/j.pbb.2022.173484; Pichini S., Rotolo M.C., García J., Girona N., Leal L., García-Algar O., Pacifici R. Neonatal withdrawal syndrome after chronic maternal consumption of 4-methylethcathinone. Forensic Sci Int 2014; 245: e33–е35. DOI:10.1016/j.forsciint.2014.10.027; Adamowicz P., Hydzik P. Fetal death associated with the use of 3,4-MDPHP and α-PHP. Clin Toxicol (Phila) 2019; 57(2): 112–116. DOI:10.1080/15563650.2018.1502443; Grapp M., Kaufmann C., Ebbecke M. Toxicological investigation of forensic cases related to the designer drug 3,4-methylenedioxypyrovalerone (MDPV): Detection, quantification and studies on human metabolism by GC-MS. Forensic Sci Int 2017; 273: 1–9. DOI:10.1016/j.forsciint.2017.01.021

  7. 7
    Academic Journal

    Συνεισφορές: Not specified., Отсутствует.

    Πηγή: Pediatric pharmacology; Том 20, № 6 (2023); 546–556 ; Педиатрическая фармакология; Том 20, № 6 (2023); 546–556 ; 2500-3089 ; 1727-5776

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.pedpharma.ru/jour/article/view/2376/1546; Palamar JJ, Su MK, Hoffman RS. Characteristics of novel psychoactive substance exposures reported to New York City Poison Center, 2011–2014. Am J Drug Alcohol Abuse. 2016;42(1):39–47. doi: https://doi.org/10.3109/00952990.2015.1106551; Wood KE. Exposure to bath salts and synthetic tetrahydrocannabinol from 2009 to 2012 in the United States. J Pediatr. 2013;163(1):213–216. doi: https://doi.org/10.1016/j.jpeds.2012.12.056; Ebrahim SH, Gfroerer J. Pregnancy-related substance use in the United States during 1996-1998. Obstet Gynecol. 2003;101(2):374–379. doi: https://doi.org/10.1016/s0029-7844(02)02588-7; Greenfield SF, Manwani SG, Nargiso JE. Epidemiology of substance use disorders in women. Obstet Gynecol Clin North Am. 2003;30(3):413–446. doi: https://doi.org/10.1016/s0889-8545(03)00072-x; Chang JC, Holland CL, Tarr JA, et al. Perinatal Illicit Drug and Marijuana Use. Am J Health Promot. 2017;31(1):35–42. doi: https://doi.org/10.4278/ajhp.141215-QUAL-625; Gómez-Ruiz LM, Marchei E, Rotolo MC, et al. Prevalence of Licit and Illicit Drugs Use during Pregnancy in Mexican Women. Pharmaceuticals (Basel). 2022;15(3):382. doi: https://doi.org/10.3390/ph15030382; Gunn JK, Rosales CB, Center KE, et al. Prenatal exposure to cannabis and maternal and child health outcomes: a systematic review and meta-analysis. BMJ Open. 2016;6(4):e009986. doi: https://doi.org/10.1136/bmjopen-2015-009986; Marchand G, Masoud AT, Govindan M, et al. Birth Outcomes of Neonates Exposed to Marijuana in Utero: A Systematic Review and Meta-analysis. JAMA Netw Open. 2022;5(1):e2145653. doi: https://doi.org/10.1001/jamanetworkopen.2021.45653; Reece AS, Hulse GK. Epidemiological overview of multidimensional chromosomal and genome toxicity of cannabis exposure in congenital anomalies and cancer development. Sci Rep. 2021;11(1):13892. doi: https://doi.org/10.1038/s41598-021-93411-5; Kalix P. A constituent of khat leaves with amphetamine-like releasing properties. Eur J Pharmacol. 1980;68(2):213–215. doi: https://doi.org/10.1016/0014-2999(80)90326-x; den Hollander B, Sundström M, Pelander A, et al. Keto amphetamine toxicity-focus on the redox reactivity of the cathinone designer drug mephedrone. Toxicol Sci. 2014;141(1):120–131. doi: https://doi.org/10.1093/toxsci/kfu108; López-Arnau R, Martínez-Clemente J, Rodrigo T, et al. Neuronal changes and oxidative stress in adolescent rats after repeated exposure to mephedrone. Toxicol Appl Pharmacol. 2015;286(1):27–35. doi: https://doi.org/10.1016/j.taap.2015.03.015; Buzhdygan TP, Rodrigues CR, McGary HM, et al. The psychoactive drug of abuse mephedrone differentially disrupts bloodbrain barrier properties. J Neuroinflammation. 2021;18(1):63. doi: https://doi.org/10.1186/s12974-021-02116-z; Martínez-Clemente J, López-Arnau R, Abad S, et al. Dose and time-dependent selective neurotoxicity induced by mephedrone in mice. PLoS One. 2014;9(6):e99002. doi: https://doi.org/10.1371/journal.pone.0099002; Tarkowski P, Jankowski K, Budzyńska B, et al. Potential prooxidative effects of single dose of mephedrone in vital organs of mice. Pharmacol Rep. 2018;70(6):1097–1104. doi: https://doi.org/10.1016/j.pharep.2018.05.010; Siedlecka-Kroplewska K, Szczerba A, Lipinska A, et al. 3-Fluoromethcathinone, a structural analog of mephedrone, inhibits growth and induces cell cycle arrest in HT22 mouse hippocampal cells. J Physiol Pharmacol. 2014;65(2):241–246; Naseri G, Fazel A, Golalipour MJ, et al. Exposure to mephedrone during gestation increases the risk of stillbirth and induces hippocampal neurotoxicity in mice offspring. Neurotoxicol Teratol. 2018;67:10–17. doi: https://doi.org/10.1016/j.ntt.2018.03.001; Adám A, Gerecsei LI, Lepesi N, Csillag A. Apoptotic effects of the ‘designer drug’ methylenedioxypyrovalerone (MDPV) on the neonatal mouse brain. Neurotoxicology. 2014;44:231–236. doi: https://doi.org/10.1016/j.neuro.2014.07.004; Yang Z, Klionsky DJ. Mammalian autophagy: core molecular machinery and signaling regulation. Curr Opin Cell Biol. 2010;22(2):124–131. doi: https://doi.org/10.1016/j.ceb.2009.11.014; Yang ZJ, Chee CE, Huang S, Sinicrope F. Autophagy modulation for cancer therapy. Cancer Biol Ther. 2011;11(2):169–176. doi: https://doi.org/10.4161/cbt.11.2.14663; Valente MJ, Amaral C, Correia-da-Silva G, et al. Methylone and MDPV activate autophagy in human dopaminergic SH-SY5Y cells: a new insight into the context of β-keto amphetamines-related neurotoxicity. Arch Toxicol. 2017;91(11):3663–3676. doi: https://doi.org/10.1007/s00204-017-1984-z; Matsunaga T, Morikawa Y, Kamata K, et al. α-Pyrrolidinononanophenone provokes apoptosis of neuronal cells through alterations in antioxidant properties. Toxicology. 2017;386:93–102. doi: https://doi.org/10.1016/j.tox.2017.05.017; Siedlecka-Kroplewska K, Wrońska A, Stasiłojć G, et al. The Designer Drug 3-Fluoromethcathinone Induces Oxidative Stress and Activates Autophagy in HT22 Neuronal Cells. Neurotox Res. 2018;34(3):388–400. doi: https://doi.org/10.1007/s12640-018-9898-y; Angoa-Pérez M, Kane MJ, Francescutti DM, et al. Mephedrone, an abused psychoactive component of ‘bath salts’ and methamphetamine congener, does not cause neurotoxicity to dopamine nerve endings of the striatum. J Neurochem. 2012;120(6):1097–1107. doi: https://doi.org/10.1111/j.1471-4159.2011.07632.x; Marusich JA, Gay EA, Stewart DA, Blough BE. Sex differences in inflammatory cytokine levels following synthetic cathinone self-administration in rats. Neurotoxicology. 2022;88:65–78. doi: https://doi.org/10.1016/j.neuro.2021.11.002; Kim OH, Jeon KO, Jang EY. Alpha-pyrrolidinopentiothiophenone (α-PVT) activates the TLR-NF-κB-MAPK signaling pathway and proinflammatory cytokine production and induces behavioral sensitization in mice. Pharmacol Biochem Behav. 2022;221:173484. doi: https://doi.org/10.1016/j.pbb.2022.173484; Pichini S, Rotolo MC, García J, et al. Neonatal withdrawal syndrome after chronic maternal consumption of 4-methylethcathinone. Forensic Sci Int. 2014;245:e33–e35. doi: https://doi.org/10.1016/j.forsciint.2014.10.027; Adamowicz P, Hydzik P. Fetal death associated with the use of 3,4-MDPHP and α-PHP. Clin Toxicol (Phila). 2019;57(2):112–116. doi: https://doi.org/10.1080/15563650.2018.1502443; Grapp M, Kaufmann C, Ebbecke M. Toxicological investigation of forensic cases related to the designer drug 3,4-methylenedioxypyrovalerone (MDPV): Detection, quantification and studies on human metabolism by GC-MS. Forensic Sci Int. 2017;273:1–9. doi: https://doi.org/10.1016/j.forsciint.2017.01.021; Adamowicz P, Gil D, Skulska A, Tokarczyk B. Analysis of MDPV in blood--determination and interpretation. J Anal Toxicol. 2013;37(5):308–312. doi: https://doi.org/10.1093/jat/bkt025; Kalapos MP. 3,4-methylene-dioxy-pyrovalerone (MDPV) epidemic? Orv Hetil. 2011;152(50):2010–2019. doi: https://doi.org/10.1556/OH.2011.29259; Strange LG, Kochelek K, Keasling R, et al. The pharmacokinetic profile of synthetic cathinones in a pregnancy model. Neurotoxicol Teratol. 2017;63:9–13. doi: https://doi.org/10.1016/j.ntt.2017.08.001; Stewart JL, Meeker JE. Fetal and infant deaths associated with maternal methamphetamine abuse. J Anal Toxicol. 1997;21(6):515–517. doi: https://doi.org/10.1093/jat/21.6.515; https://www.pedpharma.ru/jour/article/view/2376

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    Academic Journal

    Πηγή: Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care; Vol 13 (2023): Supplement; 55-56 ; Российский вестник детской хирургии, анестезиологии и реаниматологии; Vol 13 (2023): Supplement; 55-56 ; 2587-6554 ; 2219-4061 ; 10.17816/psaic.2023

    Περιγραφή αρχείου: application/pdf

  19. 19
    Conference

    Συγγραφείς: Гусамов, Ф. М.

    Περιγραφή αρχείου: application/pdf

    Relation: Социальные науки: опыт и проблемы подготовки специалистов социальной работы : материалы VI Всероссийской научно-практической конференции. Вып. 2. — 2006

    Διαθεσιμότητα: https://elar.uspu.ru/handle/ru-uspu/40684

  20. 20
    Academic Journal

    Συγγραφείς: Спиридон, B.

    Πηγή: Clinical anatomy and operative surgery; Vol. 4 No. 3 (2005); 17-19
    Клиническая анатомия и оперативная хирургия; Том 4 № 3 (2005); 17-19
    Клінічна анатомія та оперативна хірургія; Том 4 № 3 (2005); 17-19

    Περιγραφή αρχείου: application/pdf

    Σύνδεσμος πρόσβασης: http://kaos.bsmu.edu.ua/article/view/258717