138
Views
5
CrossRef citations to date
0
Altmetric
Original Research

Analysis of Risk Factors for Postoperative Delirium After Liver Transplantation

, , &
Pages 1645-1652 | Published online: 03 Jul 2020

References

  • Setters B, Solberg LM. Delirium. Prim Care. 2017;44:541–559. doi:10.1016/j.pop.2017.04.01028797379
  • Reddy S, Irkal J, Srinivasamurthy A. Postoperative delirium in elderly citizens and current practice. Anaesthesiol Clin Pharmacol. 2017;33:291–299. doi:10.4103/joacp.JOACP_180_16
  • Fong TG, Tulebaev SR, Inouye SK. Delirium in elderly adults: diagnosis, prevention, and treatment. Nat Rev Neurol. 2009;5:210–220. doi:10.1038/nrneurol.2009.2419347026
  • Vasilevskis EE, Han JH, Hughes CG, et al. Epidemiology and risk factors for delirium across hospital settings. Best Pract Res Clin Anaesthesiol. 2012;26:277–287. doi:10.1016/j.bpa.2012.07.00323040281
  • Lescot T, Karvellas CJ, Chaudlhury P, et al. Postoperative delirium in the intensive care unit predicts worse outcomes in liver transplant recipients. Can J Gastroenterol. 2013;27:207–212. doi:10.1155/2013/28918523616958
  • Lee H, Oh SY, Yu JH, et al. Risk factors of postoperative delirium in the intensive care unit after liver transplantation. World J Surg. 2018;42:2992–2999. doi:10.1007/s00268-018-4563-429511871
  • Oliver N, Bohorquez H, Anders S, et al. Post-liver transplant delirium increases mortality and length of stay. Ochsner J. 2017;17:25–30.28331444
  • Wang SH, Wang JY, Lin PY, et al. Predisposing risk factors for delirium in living donor liver transplantation patients in intensive care units. PLoS One. 2014;9:e96676. doi:10.1371/journal.pone.009667624811254
  • Dale CR, Kannas DA, Fan VS, et al. Improved analgesia, sedation, and delirium protocol associated with decreased duration of delirium and mechanical ventilation. Ann Am Thorac Soc. 2014;11:367–374. doi:10.1513/AnnalsATS.201306-210OC24597599
  • Rengel KF, Pandharipande PP, Hughes CG. Postoperative delirium. Presse Med. 2018;47:e53e64. doi:10.1016/j.lpm.2018.03.01229680484
  • Kalvas LB, Monroe TB. Structural brain changes in delirium: an integrative review. Biol Res Nurs. 2019;21:355–365. doi:10.1177/109980041984948931067980
  • Butterworth RF. Hepatic encephalopathy in cirrhosis: pathology and pathophysiology. Drugs. 2019;79:17–29. doi:10.1007/s40265-018-1017-030706423
  • Rovira A, Mínguez B, Aymerich FX, et al. Decreased white matter lesion volume and improved cognitive function after liver transplantation. Hepatology. 2007;46:1485–1490. doi:10.1002/hep.2191117929307
  • Kumar R, Gupta RK, Elderkin-Thompson V, et al. Voxel-based diffusion tensor magnetic resonance imaging evaluation of low-grade hepatic encephalopathy. J Magn Reson Imaging. 2008;27:1061–1068. doi:10.1002/jmri.2134218425846
  • Guevara M, Baccaro ME, Gómez-Ansón B, et al. Cerebral magnetic resonance imaging reveals marked abnormalities of brain tissue density in patients with cirrhosis without overt hepatic encephalopathy. J Hepatol. 2011;55:564–573. doi:10.1016/j.jhep.2010.12.00821163310
  • Montoliu C, Felipo V. Current state of knowledge of hepatic encephalopathy (part II): changes in brain white matter tracts integrity are associated with cognitive deficits in minimal hepatic encephalopathy. Meta Brain Dis. 2016;31:1359–1360. doi:10.1007/s11011-016-9909-8
  • Grover VP, Crossey MM, Fitzpatrick JA, et al. Quantitative magnetic resonance imaging in patients with cirrhosis: a cross-sectional study. Metab Brain Dis. 2016;31:1315–1325. doi:10.1007/s11011-015-9716-726251205
  • Patel VC, White H, Stoy S, et al. Clinical science workshop: targeting the gut-liver-brain axis. Metab Brain Dis. 2016;31:1327–1337. doi:10.1007/s11011-015-9743-426446022
  • Wang F, Du T, Liang C, et al. Ammonium increases Ca (2+) signaling and upregulates expression of Cav1.2 gene in astrocytes in primary cultures and in the in vivo brain. Acta Physiol. 2015;214:261–274. doi:10.1111/apha.12500
  • Karababa A, Görg B, Schliess F, et al. O-GlcNAcylation as a novel ammonia-induced posttranslational protein modification cation in cultured rat astrocytes. Metab Brain Dis. 2014;29:975–982. doi:10.1007/s11011-013-9454-724292976
  • Haack N, DubIin P, Rose CR. Dysbalance of astrocyte calcium under hyperammonemic conditions. PLoS 0ne. 2014;9:e105832. doi:10.1371/journal.pone.0105832
  • Sobczyk K, Jördens MS, Karababa A, et al. Ephrin/Ephrin receptor expression in ammonia-treated rat astrocytes and in human cerebral cortex in hepatic encephalopathy. Neurochem Res. 2015;40:274–283. doi:10.1007/s11064-014-1389-925064044
  • Görg B, Karababa A, ShafiguIlina A, et al. Ammonia-induced senescence in cultured rat astrocytes and in human cerebral cortex in hepatic encephalopathy. Glia. 2015;63:37–50. doi:10.1002/glia.2273125092802
  • Oenarto J, Karababa A, Castoldi M, et al. Ammonia-induced miRNA expression changes in cultured rat astrocytes. Sci Rep. 2016;6:18493. doi:10.1038/srep1849326755400
  • Oja SS, Saransaari P, Korpi ER. Neurotoxicity of ammonia. Neurochem Res. 2017;42:713–720. doi:10.1007/s11064-016-2014-x27465396
  • Bemeur C, Cudalbu C, Dam G, et al. Brain edema: A valid endpoint for measuring hepatic encephalopathy? Metab Brain Dis. 2016;31:1249–1258. doi:10.1007/s11011-016-9843-927272740
  • Labayen I, Ruiz JR, Ortega FB, et al. Liver enzymes and clustering cardiometabolic risk factors in European adolescents: the HELENA study. Pediatr Obes. 2015;10:361–370. doi:10.1111/ijpo.27325515703
  • Wiesner R, Edwards E, Freeman R, et al. Model for end-stage liver disease (MELD) and allocation of donor livers. Gastroenterology. 2003;124:91–96. doi:10.1053/gast.2003.5001612512033
  • Hshieh TT, Inouye SK, Oh ES, et al. Delirium in the elderly. Psychiatr Clin North Am. 2018;41(1):1–17. doi:10.1016/j.psc.2017.10.00129412839
  • Serafim RB, Bozza FA, Soares M, et al. Pharmacologic prevention and treatment of delirium in intensive care patients: a systematic review. J Crit Care. 2015;30(4):799–807. doi:10.1016/j.jcrc.2015.04.00525957498