eISSN: 2084-9850
ISSN: 1897-3116
Pielęgniarstwo Chirurgiczne i Angiologiczne/Surgical and Vascular Nursing
Bieżący numer Archiwum Artykuły zaakceptowane O czasopiśmie Rada naukowa Recenzenci Bazy indeksacyjne Prenumerata Kontakt Zasady publikacji prac Standardy etyczne i procedury
Panel Redakcyjny
Zgłaszanie i recenzowanie prac online
2/2021
vol. 15
 
Poleć ten artykuł:
Udostępnij:
Artykuł oryginalny

Neurocognitive dysfunction after cardiac surgery process

Gülseren Keskin
1

1.
Ege University, Ataturk Medical Vocational Training School, Bornova (İzmir), Turkey
Pielęgniarstwo Chirurgiczne i Angiologiczne 2021; 2: 68–73
Data publikacji online: 2021/07/29
Plik artykułu:
Pobierz cytowanie
 
 
1. Van Harten AE, Scheeren TW, Absalom AR. A review of postoperative cognitive dysfunction and neuroinflammation associated with cardiac surgery and anaesthesia. Anaesthesia 2012; 67: 280-293.
2. Ghaffary S, Ghaeli P, Talasaz AH, et al. Effect of memantine on post-operative cognitive dysfunction after cardiac surgeries: a randomized clinical trial. Daru 2017; 25: 24.
3. Green CM, Schaffer SD. Postoperative cognitive dysfunction in noncardiac surgery: a review. Trends Anaesth Crit Care 2019; 24: 40-48.
4. Johnson KB, Bailey T, Thackeray E. Anesthetic toxicity in neonates and ınfants. physiology and pharmacology of obesity, pediatrics, and the elderly. Elsevier 2019: 91-112.
5. Beca J, Sidebotham D. Neurologic dysfunction. cardiothoracic critical care, Butterworth Heinemann. Elsevier, Philadelphia 2007. 6. Salameh A, Dhein S, Dähnert I, Klein N. Neuroprotective strategies during cardiac surgery with cardiopulmonary bypass. Int J Mol Sci 2016; 17: 1945.
6. Tang N, Jiang R, Wang X, et al. Insulin resistance plays a potential role in postoperative cognitive dysfunction in patients following cardiac valve surgery. Brain Res 2017; 1657: 377-382.
7. Diodato M, Chedrawy EG. Coronary artery bypass graft surgery: the past, present, and future of myocardial revascularisation. Surg Res Pract 2014; 2014: 726158.
8. Kim K, Joung KW, Ji SM, et al. The effect of coronary angiography timing and use of cardiopulmonary bypass on acute kidney injury after coronary artery bypass graft surgery. J Thorac Cardiovasc Surg 2016; 152: 254-261.e3.
9. Oh CS, Park S, Wan Hong S, Kang WS, Kim SH. Postoperative delirium in patients undergoing off-pump coronary artery bypass grafting according to the anesthetic agent: a retrospective study. J Cardiothorac Vasc Anesth 2017; 31: 1988-1995.
10. Krenk L, Rasmussen LS. Postoperative delirium and postoperative cognitive dysfunction in the elderly – what are the differences? Minerva Anestesiol 2011; 77: 742-749.
11. Monk TG, Weldon BC, Garvan CW, et al. Predictors of cognitive dysfunction after major noncardiac surgery. Anesthesiology 2008; 108: 18-30.
12. Orhan G, Biçer Y, Taşdemir M, et al. Comparison of norocognitive functions in patients undergoing coronary bypass surgery under cardiopulmonary bypass or beating heart. J Turk Gogus Kalp Damar 2007; 15: 24-28.
13. Kurnaz P, Sungur Z, Camci E, et al. The effect of two different glycemic management protocols on postoperative cognitive dysfunction in coronary artery bypass surgery. Rev Bras Anestesiol 2017; 67: 258-265.
14. Indja B, Seco M, Seamark R, Kaplan J, Michael P. Vallely neurocognitive and psychiatric ıssues post cardiac surgery. Heart Lung Circ 2017; 26: 779-785.
15. Velazquez EJ, Lee KL, Jones RH et al. Coronary-artery bypass surgery in patients with ischemic cardiomyopathy. N Engl J Med 2016; 374: 1511-152.
16. Farhoudi M, Mehrvar K, Afrasiabi A, et al. Neurocognitive impairment after off-pump and on-pump coronary artery bypass graft surgery – an Iranian experience. Neuropsychiatr Dis Treat 2010; 6: 775-778.
17. Pérez-Belmonte LM, San Román-Terán CM, Jiménez-Navarro M, Barbancho MA, Lara JP. Assessment of long-term cognitive impairment after off-pump coronary-artery bypass grafting and related risk factors. J Am Med Dir Assoc 2015; 16: 263.e9-263.e11.
18. Salim S. Oxidative stress and the central nervous system. J Pharmacol Exp Ther 2017; 360: 201-205.
19. Steinmetz J, Christensen KB, Lund T, Lohse N, Rasmussen LS. Group I. Long-term consequences of postoperative cognitive dysfunction. Anesthesiology 2009; 110: 548-555.
20. Caplan GA, Tai J, Mohd Hanizan F, McVeigh CL, Hill MA, Poljak A. Cerebrospinal fluid apolipoprotein e levels in delirium. Dement Geriatr Cogn Dis Extra 2017; 7: 240-248.
21. Bradburn S, Sarginson J, Murgatroyd CA. Association of peripheral Interleukin-6 with global cognitive decline in non-demented adults: a meta-analysis of prospective studies. Front Aging Neurosci 2018; 9: 438.
22. Hernaus D, Quaedflieg CWEM, Offerman JS, Casales Santa MM, van Amelsvoort T. Neuroendocrine stress responses predict catecholamine- dependent working memory-related dorsolateral prefrontal cortex activity. Soc Cognit Affect Neurosci 2018; 13: 114-123.
23. Glumac S, Kardum G, Sodic L, Supe-Domic D, Karanovic N. Effects of dexamethasone on early cognitive decline after cardiac surgery: a randomised controlled trial. Eur J Anaesthesiol 2017; 34: 776-784.
24. Ueki C, Miyata H, Motomura N, et al. Off-pump technique reduces surgical mortality after elective coronary artery bypass grafting in patients with preoperative renal failure. J Thorac Cardiovasc Surg 2018; 12: 30934-30936.
25. Oh CS, Park S, Wan Hong S, Kang WS, Yoon TG, Kim SH. Postoperative delirium in patients undergoing off-pump coronary artery bypass grafting according to the anesthetic agent: a retrospective study. J Cardiothorac Vasc Anesth 2017; 31: 1988-1995.
26. Kanbak M, Saricaoglu F, Akinci SB, et al. The effects of isoflurane, sevoflurane, and desflurane anesthesia on neurocognitive outcome after cardiac surgery: a pilot study. Heart Surg Forum 2007; 10: E36-41.
27. Okgün Alcan A, Demir Korkmaz F, Çakmakçı H. An evaluation of health-promotion lifestyle behaviors following coronary artery bypass graft surgery. Turk Gogus Kalp Damar 2017; 25: 45-51.
28. Altaei T. Protective effect of silymarin during coronary artery bypass grafting surgery. Exp Clin Cardiol 2012; 17: 34-38.
29. Seco M, Edelman JJ, Van Boxtel B, et al. Neurologic injury and protection in adult cardiac and aortic surgery. J Cardiothorac Vasc Anesth 2015; 29: 185-195.
30. Pawliszak W, Kowalewski M, Maria Raffa G, et al. Cerebrovascular events after no-touch off-pump coronary artery bypass grafting, conventional side-clamp off-pump coronary artery bypass, and proximal anastomotic devices: a meta-analysis. J Am Heart Assoc 2016; 5: e002802.
31. Lamy A, Devereaux PJ, Prabhakaran D, et al. Five-year outcomes after off-pump or on-pump coronary-artery bypass grafting. N Engl J Med 2016; 375: 2359-2368.
32. Benedetto U, Caputo M, Vohra H, et al. Off-pump versus on-pump coronary artery bypass surgery in patients with actively treated diabetes and multivessel coronary disease. J Thorac Cardiovasc Surg 2016; 152:1321-1330.
33. Shroyer AL, Hattler B, Wagner TH, et al. Five-year outcomes after on-pump and off-pump coronary-artery bypass. N Engl J Med 2017; 377: 623-632.
34. Dieberg G, Smart NA, King N. On- vs. off-pump coronary artery bypass grafting: a systematic review and meta-analysis. Int J Cardiol 2016; 223: 201-211.
35. Shaefi S, Mittel A, Loberman D, Ramakrishna H. Off-pump versus on-pump coronary artery bypass grafting-a systematic review and analysis of clinical outcomes. J Cardiothorac Vasc Anesth 2019; 33: 232-244.
36. Ko SB. Perioperative stroke: pathophysiology and management. Korean J Anesthesiol 2018; 71: 3-11.
37. Gottesman RF, McKhann GM, Hogue CW. Neurological complications of cardiac surgery. Semin Neurol 2008; 28: 703-715.
38. Krenk L, Rasmussen LS, Kehlet H. New insights into the pathophysiology of postoperative cognitive dysfunction. Acta Anaesthesiol Scand 2010; 54: 951-956.
39. Kotekar N, Shenkar A, Nagaraj R. Postoperative cognitive dysfunction – current preventive strategies. Clin Interv Aging 2018; 13: 2267-2273.
40. Soenarto RF, Mansjoer A, Amir N, Aprianti M, Perdana A. Cardiopulmonary bypass alone does not cause postoperative cognitive dysfunction following open heart surgery. Anesth Pain Med 2018; 8: e83610.
41. Nath SS, Das PK. A Commentary: effects on glargine insulin on glycemic control in patients with diabetes mellitus type II undergoing off-pump coronary artery bypass graft. Ann Card Anaesth 2018; 21: 173-174.
42. Gandhi H, Sarvaia A, Malhotra A, Acharya H, Shah K, Rajavat J. Effects of glargine insulin on glycemic control in patients with diabetes mellitus type IIundergoing off-pump coronary artery bypass graft. Ann Card Anaesth 2018; 21: 167-172.
Copyright: © 2021 Termedia Sp. z o. o. This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) License (http://creativecommons.org/licenses/by-nc-sa/4.0/), allowing third parties to copy and redistribute the material in any medium or format and to remix, transform, and build upon the material, provided the original work is properly cited and states its license.
© 2024 Termedia Sp. z o.o.
Developed by Bentus.