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C-Reactive Protein and Fibrinogen as Indicators of Systemic Inflammatory Response in Patients Undergoing VATS and Conventional Pulmonary Lobectomy Cover

C-Reactive Protein and Fibrinogen as Indicators of Systemic Inflammatory Response in Patients Undergoing VATS and Conventional Pulmonary Lobectomy

Open Access
|Nov 2014

References

  1. 1. Cattaneo SM, Park BJ, Wilton AS, Seshan VE, Bains MS, Downey RJ, Flores RM, Rizk N, Rusch VW. Use of video-assisted thoracic surgery for lobectomy in elderly results in fewer complications // Ann Thorac Surg, 2008; 85:231-235
  2. 2. Craig SR, Leaver HA, Yap PL, Pugh GC, Walker WS. Acute responses following minimal access and conventional thoracic surgery // Eur J Cardiothorac Surg, 2001; 20:455-463
  3. 3. Jheon S, Yang HC, Cho SC. Video-assisted thoracic surgery for lung cancer // Gen Thorac Cardiovasc Surg, 2012; 60:255-260
  4. 4. Kaseda S, Aoki T, Hangai N, Shimizu K. Better pulmonary function and prognosis with videoassisted thoracic surgery than with thoracotomy // Ann Thorac Surg, 2000; 70:1644-1646
  5. 5. McKenna RJ, Houck W, Fuller CB. Video-assisted thoracic surgery lobectomy: experience with 1,100 cases // Ann ThoracSurg, 2006; 81:421-425
  6. 6. McKenna RJ, Wolf RK, Brenner M, Fischel RJ, Wurning P. Is lobectomy by video-assisted thoracic surgery an adequate cancer operation? // Ann Thorac Surg, 1998; 66:1903-1908
  7. 7. Nagahiro I, Andou A, Aoe M, Sano Y, Date H, Shimizu N. Pulmonary function, postoperative pain, and serum cytokine level after lobectomy: a comparison of VATS and conventional procedure// Ann Thorac Surg, 2001; 72:362-365
  8. 8. Nakata M, Saeki H, Yokoyama N, Kurita A, Takiyama W, Takashima S. Pulmonary function after lobectomy: video-assisted thoracic surgery versus thoracotomy // Ann Thorac Surg, 2000; 70:938-941
  9. 9. Nicastri DG, Wisnivesky JP, Litle VR, Yun J, Chin C, Dembitzer FR, Swanson SJ. Thoracoscopic lobectomy: report on safety, discharge independence, pain, and chemotherapy tolerance // J Thorac Cardiovasc Surg, 2008; 135:642-647
  10. 10. Paul S, Altorki NK, Sheng S, Lee PC, Harpole DH, Onaitis MW, et al. Thoracoscopic lobectomy associated with lower morbidity than open lobectomy: a propensity-matched analysis from STS database // J Thorac Cardiovasc Surg, 2010; 139:366-378
  11. 11. Roviaro G, Rebuffat C, Varoli FC, Mariani C, Maciocco M. Videoendoscopic pulmonary lobectomy for cancer // Surg Laparosc Endosc, 1992; 2:244-247
  12. 12. Shaw JP, Dembitzer FR, Wisnivesky JP, Litle VR, Weiser TS, Yun J, et al. Video-assisted thoracoscopic lobectomy:state of the art and future directions // Ann Thorac Surg, 2008; 85:S705-S70910.1016/j.athoracsur.2007.11.04818222201
  13. 13. Silins I, Apsvalks M, Sirgeda A. VATS Lobectomy: a Report of Our Initial Experience // Acta Chirurgica Latviensis, 2008; 8:64-70
  14. 14. Song SW, Lee HS, Kim MS, Nam BH, Zo JI. Preoperative serum fibrinogen level predicts postoperative pulmonary complications after lung cancer resection // Ann Thorac Surg 2006; 81:1974-1981
  15. 15. Sugi K, Kaneda Y, Esato K. Video-assisted thoracoscopic lobectomy achieves a satisfactory long-term prognosis in patients with clinical stage IA lung cancer // World J Surg, 2000; 24:27-31
  16. 16. Swanson SJ, Herndon JE, D`Amico TA. Videoassistedthoracic surgery lobectomy: report of CALGB 39802 - a prospective, multi-institution feasibility study // J Clin Oncol 2007; 25:4993-4997
  17. 17. Thomas P, Dodolli C, Yena S, Thirion X, Sebag F, Fuentes P, Giudicelli R. VATS is an adequate oncological operation for stage I non-small cell lung cancer // Eur J Cardiothorac Surg, 2002; 21:1094-1099
  18. 18. Turna A, Solak O, Cetinkaya E, Kilicgun A, Metin M, Sayar A, Gurses A. Lactate dehydrogenase levels predict pulmonary morbidity after lung resection for non-small cell lung cancer // Eur J Cardiothorac Surg 2004; 26:483-487
  19. 19. Uramoto H, Naknishi R, Fujino Y, Imoto H, Takenoyama M, Yoshimatsu T, Oyama T, Osaki T, Yasumoto K. Prediction of pulmonary complications after lobectomy in patients with non-small cell lung cancer // Thorax, 2001; 56:59-61
  20. 20. Walker WS, Codispoti M, Soon SY, Stamenkovic S, Carnochan F, Pugh G. Long-term outcomes following VATS lobectomy for non-small cell bronchogenic carcinoma // Eur J Cardiothorac Surg, 2003; 23:397-402
  21. 21. Walker WS, Leaver HA. Immunologic and stress responses following video-assisted thoracic surgery and open pulmonary lobectomy in early stage lung cancer. // Thor Surg Clin 2007; 17:241-24910.1016/j.thorsurg.2007.04.00117626402
  22. 22. Whitson BA, Andrade RS, Boettcher A, Bardales R, Kratzke RA, Dahlberg PS, Maddaus MA. Video-assisted thoracoscopic surgery is more favourable than thoracotomy of clinical stage I non-small cell lung cancer // Ann Thorac Surg, 2007; 83:1965-1970
  23. 23. Whitson BA, Groth SS, Duval SJ, Swanson SJ, Maddaus MA. Surgery for early-stage non-small cell lung cancer: a systematic review of the videoassisted thoracoscopic surgery versus thoracotomy approaches to lobectomy // Ann Thorac Surg, 2008; 86:2008-2016
  24. 24. Yan TD, Black D, Bannon PG, McCaughan BC. Systematic review and meta-analysis of randomized and non-randomized trials on safety and efficacy of video-assisted thoracic surgery lobectomy for early-stage non-small-cell lung cancer // J Clin Oncol, 2009; 27:2553-2562
  25. 25. Yim APC, Wan S, Lee TW, Arifi AA. VATS Lobectomy reduces cytokine responses compared with Conventional surgery // Ann Thorac Surg 2000; 70:243-247
DOI: https://doi.org/10.2478/chilat-2014-0003 | Journal eISSN: 2199-5737 | Journal ISSN: 1407-981X
Language: English
Page range: 14 - 17
Published on: Nov 25, 2014
Published by: Riga Stradins University
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2014 Ints Silins, Maris Apsvalks, Arta Sirgeda, Aigars Petersons, Alvils Krams, published by Riga Stradins University
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.