76
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Biphasic intra-thoracic pressure regulation augments cardiac index during porcine peritonitis: a feasibility study

, , , , , , & show all
Pages 49-54 | Received 17 Jul 2013, Accepted 16 Oct 2013, Published online: 13 Dec 2013

References

  • Angus, D.C., Linde-Zwirble, W.T., Lidicker, J., Clermont, G., Carcillo, J., and Pinsky, M.R., 2001, Epidemiology of severe sepsis in the United States: Analysis of incidence, outcome, and associated costs of care. Critical Care Medicine, 29, 1303–1310
  • Martin, G.S., Mannino, D.M., Eaton, S., and Moss, M., 2003, The epidemiology of sepsis in the United States from 1979 through 2000. New England Journal of Medicine, 348, 1546–1554
  • Kumar, A., Roberts, D., Wood, K.E., Light, B., Parrillo, J.E., Sharma, S., Suppes, R., Feinstein, D., Zanotti, S., Taiberg, L., Gurka, D., Kumar, A., and Cheang, M., 2006, Duration of hypotension before initiation of effective antimicrobial therapy is the critical determinant of survival in human septic shock. Critical Care Medicine, 34, 1589–1596
  • Rivers, E., Nguyen, B., Havstad, S., Ressler, J., Muzzin, A., Knoblich, B., Peterson, E., Tomlanovich, M., and Early Goal-Directed Therapy Collaborative Group, 2001, Early goal-directed therapy in the treatment of severe sepsis and septic shock. New England Journal of Medicine, 345, 1368–1377
  • Annane, D., Aegerter, P., Jars-Guincestre, M.C., and Guidet, B., 2003, Current epidemiology of septic shock: The CUB-Rea Network. American Journal of Respiratory and Critical Care Medicine, 168, 165–172
  • Bernard, G.R., Vincent, J.L., Laterre, P.F., LaRosa, S.P., Dhainaut, J.F., Lopez-Rodriguez, A., Steingrub, J.S., Garber, G.E., Helterbrand, J.D., Ely, E.W., Fisher, C.J., Jr., and Recombinant human protein C Worldwide Evaluation in Severe Sepsis (PROWESS) study group, 2001, Efficacy and safety of recombinant human activated protein C for severe sepsis. New England Journal of Medicine, 344, 699–709
  • Otero, R.M., Nguyen, H.B., Huang, D.T., Gaieski, D.F., Goyal, M., Gunnerson, K.J., Trzeciak, S., Sherwin, R., Holthaus, C.V., Osborn, T., and Rivers, E.P., 2006, Early goal-directed therapy in severe sepsis and septic shock revisited: Concepts, controversies, and contemporary findings. Chest, 130, 1579–1595
  • Cinel, I., and Dellinger, R.P., 2006, Current treatment of severe sepsis. Current Infectious Disease Reports, 8, 358–365
  • Dellinger, R.P., Levy, M.M., Rhodes, A., Annane, D., Gerlach, H., Opal, S.M., Sevransky, J.E., Sprung, C.L., Douglas, I.S., Jaeschke, R., Osborn, T.M., Nunnally, M.E., Townsend, S.R., Reinhart, K., Kleinpell, R.M., Angus, D.C., Deutschman, C.S., Machado, F.R., Rubenfeld, G.D., Webb, S.A., Beale, R.J., Vincent, J.L., Moreno, R., and Surviving Sepsis Campaign Guidelines Committee including the Pediatric Subgroup, 2013, Surviving Sepsis Campaign: International guidelines for management of severe sepsis and septic shock, 2012. Intensive Care Medicine, 39, 165–228
  • Trzeciak, S., Cinel, I., Phillip Dellinger, R., Shapiro, N.I., Arnold, R.C., Parrillo, J.E., Hollenberg, S.M., and Microcirculatory Alterations in Resuscitation and Shock (MARS) Investigators, 2008, Resuscitating the microcirculation in sepsis: The central role of nitric oxide, emerging concepts for novel therapies, and challenges for clinical trials. Academic Emergency Medicine, 15, 399–413
  • Lurie, K.G., Mulligan, K.A., McKnite, S., Detloff, B., Lindstrom, P., and Lindner, K.H., 1998, Optimizing standard cardiopulmonary resuscitation with an inspiratory impedance threshold valve. Chest, 113, 1084–1090
  • Lurie, K.G., Zielinski, T., McKnite, S., Aufderheide, T., and Voelckel, W., 2002, Use of an inspiratory impedance valve improves neurologically intact survival in a porcine model of ventricular fibrillation. Circulation, 105, 124–129
  • Lurie, K.G., Zielinski, T.M., McKnite, S.H., Idris, A.H., Yannopoulos, D., Raedler, C.M., Sigurdsson, G., Benditt, D.G., and Voelckel, W.G., 2004, Treatment of hypotension in pigs with an inspiratory impedance threshold device: A feasibility study. Critical Care Medicine, 32, 1555–1562
  • Samniah, N., Voelckel, W.G., Zielinski, T.M., McKnite, S., Patterson, R., Benditt, D.G., and Lurie, K.G., 2003, Feasibility and effects of transcutaneous phrenic nerve stimulation combined with an inspiratory impedance threshold in a pig model of hemorrhagic shock. Critical Care Medicine, 31, 1197–1202
  • Sigurdsson, G., Yannopoulos, D., McKnite, S.H., Sondeen, J.L., Benditt, D.G., and Lurie, K.G., 2006, Effects of an inspiratory impedance threshold device on blood pressure and short term survival in spontaneously breathing hypovolemic pigs. Resuscitation, 68, 399–404
  • Yannopoulos, D., Sigurdsson, G., McKnite, S., Benditt, D., and Lurie, K.G., 2004, Reducing ventilation frequency combined with an inspiratory impedance device improves CPR efficiency in swine model of cardiac arrest. Resuscitation, 61, 75–82
  • Yannopoulos, D., McKnite, S.H., Metzger, A., and Lurie, K.G., 2006, Intrathoracic pressure regulation for intracranial pressure management in normovolemic and hypovolemic pigs. Critical Care Medicine, 34 (12 Suppl), S495–500
  • Yannopoulos, D., McKnite, S., Metzger, A., and Lurie, K.G., 2007, Intrathoracic pressure regulation improves 24-hour survival in a porcine model of hypovolemic shock. Anesthesia & Analgesia, 104, 157–162
  • Goldfarb, R.D., Dellinger, R.P., and Parrillo, J.E., 2005, Porcine models of severe sepsis: Emphasis on porcine peritonitis. Shock, 24 (Suppl 1), 75–81
  • Goldfarb, R.D., Glock, D., Kumar, A., McCarthy, R.J., Mei, J., Guynn, T., Matushek, M., Trenholme, G., and Parrillo, J.E., 1996, A porcine model of peritonitis and bacteremia simulates human septic shock. Shock, 6, 442–451
  • Zanotti-Cavazzoni, S.L., and Goldfarb, R.D., 2009, Animal models of sepsis. Critical Care Clinics, 25, 703–719, vii–viii
  • Goldfarb, R.D., Parker, T.S., Levine, D.M., Glock, D., Akhter, I., Alkhudari, A., McCarthy, R.J., David, E.M., Gordon, B.R., Saal, S.D., Rubin, A.L., Trenholme, G.M., and Parrillo, J.E., 2003, Protein-free phospholipid emulsion treatment improved cardiopulmonary function and survival in porcine sepsis. American Journal of Physiology, Regulatory, Integrative & Comparative Physiology, 284, R550–R557
  • Marino, B.S., Yannopoulos, D., Sigurdsson, G., Lai, L., Cho, C., Redington, A., Nicolson, S., Nadkarni, V., and Lurie, K.G., 2004, Spontaneous breathing through an inspiratory impedance threshold device augments cardiac index and stroke volume index in a pediatric porcine model of hemorrhagic hypovolemia. Critical Care Medicine, 32 (Suppl 9), S398–405
  • Yannopoulos, D., Kotsifas, K., Aufderheide, T.P., and Lurie, K.G., 2007, Cardiac arrest, mild therapeutic hypothermia, and unanticipated cerebral recovery. Neurologist, 13, 369–375
  • LeDoux, D., Astiz, M.E., Carpati, C.M., and Rackow, E.C., 2000, Effects of perfusion pressure on tissue perfusion in septic shock. Critical Care Medicine, 28, 2729–2732
  • Bourgoin, A., Leone, M., Delmas, A., Garnier, F., Albanese, J., and Martin, C., 2005, Increasing mean arterial pressure in patients with septic shock: Effects on oxygen variables and renal function. Critical Care Medicine, 33, 780–786
  • O’Dwyer, C., Woodson, L.C., Conroy, B.P., Lin, C.Y., Deyo, D.J., Uchida, T., and Johnston, W.E., 1997, Regional perfusion abnormalities with phenylephrine during normothermic bypass. Annals of Thoracic Surgery, 63, 728–735
  • Maier, S., Hasibeder, W.R., Hengl, C., Pajk, W., Schwarz, B., Margreiter, J., Ulmer, H., Engl, J., and Knotzer, H., 2009, Effects of phenylephrine on the sublingual microcirculation during cardiopulmonary bypass. British Journal of Anaesthesia, 102, 485–491
  • Dubin, A., Pozo, M.O., Casabella, C.A., Pálizas, F., Jr., Murias, G., Moseinco, M.C., Kanoore Edul, V.S., Pálizas, F., Estenssoro, E., and Ince, C., 2009, Increasing arterial blood pressure with norepinephrine does not improve microcirculatory blood flow: A prospective study. Critical Care, 13, R92
  • Yannopoulos, D., Aufderheide, T.P., McKnite, S., Kotsifas, K., Charris, R., Nadkarni, V., and Lurie, K.G., 2006, Hemodynamic and respiratory effects of negative tracheal pressure during CPR in pigs. Resuscitation, 69, 487–494
  • Smith, S.W., Parquette, B., Lindstrom, D., Metzger, A.K., Kopitzke, J., and Clinton, J., 2010, An impedance threshold device increases blood pressure in hypotensive patients. Journal of Emergency Medicine, 41, 549–558
  • Sagawa, K., 1978, The ventricular pressure-volume diagram revisited. Circulation Research, 43, 677–687

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.