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Recent Advances Of Mucosal Capnometry And The Perspectives Of Gastrointestinal Monitoring In The Critically Ill. A Pilot Study Cover

Recent Advances Of Mucosal Capnometry And The Perspectives Of Gastrointestinal Monitoring In The Critically Ill. A Pilot Study

Open Access
|Feb 2016

References

  1. 1. Pastores SM, Katz DP, Kvetan V. Splanchnic ischemia and gut mucosal injury in sepsis and the multiple organ dysfunction syndrome. Am J Gastroenterol. 1996;91:1697-710.
  2. 2. Sakr Y, Dubois MJ, De Backer D, Creteur J, Vincent JL. Persistent microcirculatory alterations are associated with organ failure and death in patients with septic shock. Crit Care Med. 2004;32:1825-31.10.1097/01.CCM.0000138558.16257.3F
  3. 3. Pellis T, Weil MH, Tang W, Sun S, Csapozi P, Castillo C. Increases in both buccal and sublingual partial pressure of carbon dioxide reflect decreases of tissue blood flows in a porcine model during hemorrhagic shock. J Trauma. 2005;58:817-24.10.1097/01.TA.0000152674.69802.47
  4. 4. Cammarata GA, Weil MH, Castillo CJ, et al. Buccal capnometry for quantitating the severity of hemorrhagic shock. Shock. 2009;31:207-11.10.1097/SHK.0b013e31817c0eb7
  5. 5. Lu H, Zheng J, Zhao P, Zhang G, Wu T. Buccal partial pressure of carbon dioxide outweighs traditional vital signs in predicting the severity of hemorrhagic shock in a rat model. J Surg Res. 2014;187:262-9.10.1016/j.jss.2013.10.015
  6. 6. Baron BJ, Sinert R, Zehtabchi S, Stavile KL, Scalea TM. Diagnostic utility of sublingual PCO2 for detecting hemorrhage in penetrating trauma patients. J Trauma. 2004;57:69-74.10.1097/01.TA.0000090754.94232.2C
  7. 7. Xu J, Ma L, Sun S, et al. Fluid resuscitation guided by sublingual partial pressure of carbon dioxide during hemorrhagic shock in a porcine model. Shock. 2013;39:361-5.10.1097/SHK.0b013e31828936aa
  8. 8. Palágyi P, Kaszaki J, Rostás A, et al. Monitoring microcirculatory blood flow with a new sublingual tonometer in a porcine model of hemorrhagic shock. BioMed Research International. 2015; 847152. http://dx.doi.org/10.1155/2015/847152.10.1155/2015/847152
  9. 9. Verdant CL, De Backer D, Bruhn A, et al. Evaluation of sublingual and gut mucosal microcirculation in sepsis: a quantitative analysis. Crit Care Med. 2009;37:2875-81.10.1097/CCM.0b013e3181b029c1
  10. 10. Boda D, Murányi L. Gastrotonometry: an aid to the control of ventilation during arteficial respiration. Lancet. 1959;1:181-2.10.1016/S0140-6736(59)90372-1
  11. 11. Boda D, Tálosi G, Hódi Z. Development of gastrotonometry and the future of its use in the monitoring of critically ill patients. Orv Hetil. 2005;146:153-7.
  12. 12. Rózsavölgyi Z, Boda D, Hajnal A, Boda K, Somfay A. A Newly Developed Sublingual Tonometric Method for the Evaluation of Tissue Perfusion and Its Validation In Vitro and in Healthy Persons In Vivo and the Results of the Measurements in COPD Patients. Crit Care Res Pract. 2014;2014:534130.
  13. 13. Kolkman JJ, Mensink PB. Non-occlusive mesenteric ischaemia: a common disorder in gastroenterology and intensive care. Best Pract Res Clin Gastroenterol. 2003;17:457-73.10.1016/S1521-6918(03)00021-0
  14. 14. Ackland G, Grocott MP, Mythen MG. Understanding gastrointestinal perfusion in critical care: so near, and yet so far. Crit Care. 2000;4:269-81.10.1186/cc70913725611094506
  15. 15. Kolkman JJ, Bargeman M, Huisman AB, Geelkerken RH. Diagnosis and management of splanchnic ischemia. World J Gastroenterol. 2008;28;14:7309-20.10.3748/wjg.14.7309277811419109864
  16. 16. Kolkman JJ, Otte JA, Groeneveld AB. Gastrointestinal luminal PCO2 tonometry: an update on physiology, methodology and clinical applications. Br J Anaesth. 2000;84:74-86.10.1093/oxfordjournals.bja.a01338610740551
  17. 17. Dubin A, Edul VS, Pozo MO, et al. Persistent villi hypoperfusion explains intramucosal acidosis in sheep endotoxemia. Crit Care Med. 2008; 36:535-42.10.1097/01.CCM.0000300083.74726.4318216603
  18. 18. Knichwitz G, Rötker J, Möllhoff T, Richter KD, Brüssel T. Continuous intramucosal PCO2 measurement allows the early detection of intestinal malperfusion. Crit Care Med. 1998;26:1550-7.10.1097/00003246-199809000-000239751592
  19. 19. Mensink PB, van Petersen AS, Geelkerken RH, Otte JA, Huisman AB, Kolkman JJ. Clinical significance of splanchnic artery stenosis. Br J Surg. 2006;93:1377-82.10.1002/bjs.548117022013
  20. 20. Otte JA, Geelkerken RH, Huisman AB, Kolkman JJ. What is the best diagnostic approach for chronic gastrointestinal ischemia? Am J Gastroenterol. 2007;102:2005-10.
  21. 21. Mensink PB, van Petersen AS, Kolkman JJ, Otte JA, Huisman AB, Geelkerken RH. Gastric exercise tonometry: the key investigation in patients with suspected celiac artery compression syndrome. J Vasc Surg. 2006;44:277-81.10.1016/j.jvs.2006.03.03816890853
  22. 22. Kozeniecki M, Fritzshall R. Enteral nutrition for adults in the hospital setting. Nutr Clin Pract. 2015;30:634-51.10.1177/088453361559401226203073
  23. 23. Braunschweig CL, Levy P, Sheean PM, Wang X. Enteral compared with parenteral nutrition: a meta-analysis. Am J Clin Nutr. 2001;74:534-42.10.1093/ajcn/74.4.53411566654
  24. 24. Gungabissoon U, Hacquoil K, Bains C, et al. Prevalence, risk factors, clinical consequences, and treatment of enteral feed intolerance during critical illness. J Parenter Enteral Nutr. 2015;39:441-8.10.1177/014860711452645024637246
  25. 25. Maynard N, Bihari D, Beale R, et al. Assessment of splanchnic oxygenation by gastric tonometry in patients with acute circulatory failure. JAMA. 1993;270:1203-10.10.1001/jama.1993.03510100053032
  26. 26. Creteur J, De Backer D, Sakr Y, Vincent JL. Sublingual capnometry tracks microcirculatory changes in septic patients. Intensive Care Med. 2006;32:516-23.10.1007/s00134-006-0070-416485092
  27. 27. Pernat A, Weil MH, Tang W, et al. Effects of hyper- and hypoventilation on gastric and sublingual PCO2. J of Appl Physiol. 1999;87:933-7.10.1152/jappl.1999.87.3.933
  28. 28. Salzman AL, Strong KE, Wang H, Wollert PS, Vandermeer TJ, Fink MP. Intraluminal “balloonless” air tonometry: a new method for determination of gastrointestinal mucosal carbon dioxide tension. Crit Care Med. 1994;22:126-34.10.1097/00003246-199401000-00024
  29. 29. Kolkman JJ, Steverink PJ, Groeneveld AB, Meuwissen SG. Characteristics of time-dependent PCO2 tonometry in the normal human stomach. Br J Anaesth. 1998;81:669-75.10.1093/bja/81.5.669
  30. 30. Fiddian-Green RG, Pittenger G, Whitehouse WM Jr. Backdiffusion of CO2 and its influence on the intramural pH in gastric mucosa. J Surg Res. 1982;33:39-48.10.1016/0022-4804(82)90007-5
  31. 31. Gutierrez G, Palizas F, Doglio G, et al. Gastric intramucosal pH as a therapeutic index of tissue oxygenation in critically ill patients. Lancet. 1992;339:195-9.10.1016/0140-6736(92)90002-K
  32. 32. Heino A, Hartikainen J, Merasto ME, Alhava E, Takala J. Systemic and regional pCO2 gradients as markers of intestinal ischaemia. Intensive Care Med. 1998;24:599-604.10.1007/s0013400506219681782
  33. 33. Carlesso E, Taccone P, Gattinoni L. Gastric tonometry. Minerva Anestesiol. 2006;72:529-32.
  34. 34. Bennett-Guerrero E, Panah MH, Bodian CA, et al. Automated detection of gastric luminal partial pressure of carbon dioxide during cardiovascular surgery using the Tonocap. Anesthesiology. 2000;92:38-45.10.1097/00000542-200001000-0001210638897
  35. 35. Creteur J, De Backer D, Sakr Y, Koch M, Vincent JL. Sublingual capnometry tracks microcirculatory changes in septic patients. Intensive Care Med. 2006;32:516-23.10.1007/s00134-006-0070-4
  36. 36. Povoas HP, Weil MH, Tang W, Moran B, Kamohara T, Bisera J. Comparisons between sublingual and gastric tonometry during hemorrhagic shock. Chest. 2000;118:1127-32.10.1378/chest.118.4.112711035688
  37. 37. Nakagawa Y, Weil MH, Tang W, Sun S, Yamaguchi H, Jin X, Bisera J. Sublingual capnometry for diagnosis and quantitation of circulatory shock. Am J Respir Crit Care Med. 1998;157:1838-43.10.1164/ajrccm.157.6.97100299620915
  38. 38. Boda D, Kaszaki J, Tálosi G. A new simple tool for tonometric determination of the PCO2 in the gastrointestinal tract: in vitro and in vivo validation studies. Eur J Anaesthesiol. 2006;23:680-5.10.1017/S026502150600055X16805933
  39. 39. Chapman MJ, Deane AM. Gastrointestinal dysfunction relating to the provision of nutrition in the critically ill. Curr Opin Clin Nutr Metab Care. 2015;18:207-12.10.1097/MCO.000000000000014925603226
  40. 40. Chapman MJ, Nguyen NQ, Deane AM. Gastrointestinal dysmotility: evidence and clinical management. Curr Opin Clin Nutr Metab Care. 2013;16:209-16.10.1097/MCO.0b013e32835c1fa523334174
  41. 41. Palágyi P, Vimláti L, Boda K, Tálosi G, Boda D. Practical experiences and in vitro and in vivo validation studies with a new gastric tonometric probe in human adult patients. J Crit Care. 2010;25:541.e9-15.10.1016/j.jcrc.2009.12.00220149588
  42. 42. Joosten A, Alexander B, Cannesson M. Defining goals of resuscitation in the critically ill patient. Crit Care Clin. 2015;31:113-32.10.1016/j.ccc.2014.08.00625435481
  43. 43. Mythen MG, Webb AR. Perioperative plasma volume expansion reduces the incidence of gut mucosal hypoperfusion during cardiac surgery. Arch Surg. 1995;130:423-9.10.1001/archsurg.1995.014300400850197535996
  44. 44. Mythen MG. Postoperative gastrointestinal tract dysfunction. Anesth Analg. 2005;100:196-204.10.1213/01.ANE.0000139376.45591.1715616078
  45. 45. Giglio MT, Marucci M, Testini M, Brienza N. Goal-directed haemodynamic therapy and gastrointestinal complications in major surgery: a meta-analysis of randomized controlled trials. Br J Anaesth. 2009;103:637-46.10.1093/bja/aep27919837807
  46. 46. Kirov MY, Kuzkov VV, Molnar Z. Perioperative haemodynamic therapy. Curr Opin Crit Care. 2010;16:384-92.10.1097/MCC.0b013e32833ab81e20508520
  47. 47. Futier E, Robin E, Jabaudon M, et al. Central venous O₂ saturation and venous-to-arterial CO₂ difference as complementary tools for goal-directed therapy during high-risk surgery. Crit Care. 2010;14:R193.10.1186/cc9310321930021034476
  48. 48. Robel-Tillig E, Knüpfer M, Pulzer F, Vogtmann C. Blood flow parameters of the superior mesenteric artery as an early predictor of intestinal dysmotility in preterm infants. Pediatr Radiol. 2004;34:958-62. 10.1007/s00247-004-1285-615372217
DOI: https://doi.org/10.1515/jccm-2016-0002 | Journal eISSN: 2393-1817 | Journal ISSN: 2393-1809
Language: English
Page range: 30 - 37
Submitted on: Sep 21, 2015
Accepted on: Dec 5, 2015
Published on: Feb 9, 2016
Published by: University of Medicine, Pharmacy, Science and Technology of Targu Mures
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Péter Palágyi, Sándor Barna, Péter Csábi, Péter Lorencz, Ildikó László, Zsolt Molnár, published by University of Medicine, Pharmacy, Science and Technology of Targu Mures
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.