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AKTUÁLNÍ FARMAKOLOGICKÉ MOŽNOSTI UDRŽENÍ PRŮCHODNOSTI MIKROVASKULÁRNÍ CÉVNÍ ANASTOMÓZY: PŘEHLEDOVÝ ČLÁNEK


Autori: Š. Pohanka;  J. Šimek
Pôsobisko autorov: Tomas Bata Regional Hospital Zlín, Department of Oral and Maxillofacial Surgery, Zlín, Czech Republic
Vyšlo v časopise: ACTA CHIRURGIAE PLASTICAE, 62, 1-2, 2020, pp. 40-44


Zdroje

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4. Froemel D., Fitzsimons S-J, Frank J, Sauerbier M, Meurer A, Barker JH. A Review of Thrombosis and Antithrombotic Therapy in Microvascular Surgery. European Surgical Research. 50, 2013, p. 32-43.

5. Aps C, Cox RG., Mayou BJ. et al. The role of anaesthetic management in enhancing peripheral blood flow in patients undergoing free flap transfer. Annals of the Royal College of Surgeons of England. 1985, 67:177–9.

6. Goh CSL., Ng MJM., Song DH., Ooi ASH. Perioperative Vasopressor Use in Free Flap Surgery: A Systematic Review and Meta-Analysis. J Reconstr Microsurg. 2019; 35(7): 529–40.

7. Suominen S., Svartling N., Silvasti M., Niemi T., Kuokkanen H., Asko-Seljavaara S. The Effect of Intravenous Dopamine and Dobutamine on Blood Circulation during a Microvascular TRAM Flap Operation. Annals of Plastic Surgery. 2004, 53:425–31.

8. Kremer T., Bauer M., Zahn P. et al. Perioperatives Management in der Mikrochirurgie – Konsensus-Statement der Deutschsprachigen Arbeitsgemeinschaft für Mikrochirurgie der peripheren Nerven und Gefäße. Handchirurgie Mikrochirurgie Plastische Chirurgie. 2016, 48:205–11.

9. Motakef S., Mountziaris PM., Ismail IK., Agag RL., Patel A. Emerging Paradigms in Perioperative Management for Microsurgical Free Tissue Transfer. Plastic and Reconstructive Surgery. 2015, 135:290–9.

10. Dort JC., Farwell DG., Findlay M. et al. Optimal Perioperative Care in Major Head and Neck Cancer Surgery With Free Flap Reconstruction. JAMA Otolaryngology–Head & Neck Surgery. 2017, 143:292–303.

11. Ševčíková S., Durila M., Vymazal T. Vliv infuzních roztoků na krevní srážlivost. Anaesthesiology & Intensive Medicine/Anesteziologie a Intenzivni Medicina, 2018, 29:258–64.

12. Brady JS., Desai SV., Crippen MM., Eloy JA., Gubenko Y., Baredes S., Park RCh. Association of Anesthesia Duration With Complications After Microvascular Reconstruction of the Head and Neck. JAMA Facial Plastic Surgery. 2018, 20:188–95.

13. Pršić A., Kiwanuka E., Caterson SA., Caterson EJ. Anticoagulants and Statins as Pharmacological Agents in Free Flap Surgery: Current Rationale. Eplasty. 2015, 15:e51:478–93.

14. Abraham M. et al. Thromboprophylaxis in head and neck microvascular reconstruction. Craniomaxillofacial Trauma & Reconstruction, 2018, 11(2):85–95.

15. Huby M., Rem K., Moris V., Guillier D., Revol M., Cristofari S. Are prostaglandins or calcium channel blockers efficient for free flap salvage? A review of the literature. Journal of Stomatology, Oral and Maxillofacial Surgery. 2018, 119:297–300.

16. Zavlin D., Chegireddy V., Jubbal K., Agrawal N., Spiegel A. Management of Microsurgical Patients using Intraoperative Unfractionated Heparin and Thromboelastography. Journal of Reconstructive Microsurgery. 2019, 35:198–208. DOI: 10.1055/s-0038-1670683.

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18. Kroll SS., Miller MJ., Reece GP. et al. Anticoagulants and Hematomas in Free Flap. Plastic and reconstructive surgery, 1995, 96(3):643–7.

19. Enajat M., Aziz Mohammadi M., Debeij J., Van der Hulst R., Mureau M. Effect of Acetylsalicylic Acid on Microvascular Thrombosis in Autologous Breast Reconstruction. Journal of Reconstructive Microsurgery. 2014, 30:65–70.

20. Nayak VK., Deschler DG. Clopidogrel Use for Reducing the Rate of Thrombosis in a Rat Model of Microarterial Anastomosis. Archives of Otolaryngology–Head & Neck Surgery. 2005, 131:800–3.

21. Zhou W., Zhang WB., Yu Y. et al. Are antithrombotic agents necessary for head and neck microvascular surgery? International Journal of Oral and Maxillofacial Surgery. 2019, 48:869–74.

22. Cummins TR. Setting up for the block: the mechanism underlying lidocaine’s use-dependent inhibition of sodium channels. The Journal of Physiology [online]. 2007, 582(1), 11–11 [cit. 2019-07-15]. DOI: 10.1113/jphysiol.2007.136671.

23. Newton DJ., McLeod GA., Khan F., Belch JJF. Mechanisms influencing the vasoactive effects of lidocaine in human skin. Anaesthesia [online]. 2007, 62(2), 146–50 [cit. 2019-07-15]. DOI: 10.1111/j.1365-2044.2006.04901.x.

24. Johnestone RE., Vax MK., Bishop DJ. et al. Large doses of topical lidocaine during microvascular surgery are not associated with toxic blood concentrations. Anesthesiology: The Journal of the American Society of Anesthesiologists, 1995, 82.2: 593–6.

25. Hýža P., Streit L., Schwarz D., Kubek T., Veselý J. Vasospasm of the Flap Pedicle. Plastic and Reconstructive Surgery. 2014, 134:574e–84e.

26. Segreto F., Marangi GF., Signoretti M., Cazzato V., Giorgino R., Alessandri-Bonetti M., Persichetti P. The Use of Botulinum Toxin in Flap Surgery: A Review of the Literature. Surgical Innovation. 2019, 26:478–84.

27. Infanger M., Shakibaei M., Kossmehl P. et al. Intraluminal Application of Vascular Endothelial Growth Factor Enhances Healing of Microvascular Anastomosis in a Rat Model. Journal of Vascular Research. 2005, 42:202–13.

28. Crabb DJMcK., Niall M., Kenneht R. et al. Topical use of prostacyclin in microvascular surgery. British Journal of Plastic Surgery, 1985, 38:383–8.

29. Leung PC., Chan MY., Roberts MB. The use of prostaglandins as local antithrombotic agents in microvascular surgery. British Journal of Plastic Surgery. 1981, 34:38–40.

Štítky
Chirurgia plastická Ortopédia Popáleninová medicína Traumatológia

Článok vyšiel v časopise

Acta chirurgiae plasticae

Číslo 1-2

2020 Číslo 1-2
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