The Experts below are selected from a list of 27 Experts worldwide ranked by ideXlab platform

F L Glauser - One of the best experts on this subject based on the ideXlab platform.

  • the effects of amrinone and calcium chloride on pulmonary vasculature and biventricular function in Ethchlorvynol induced lung injury in sheep
    Acta Anaesthesiologica Scandinavica, 1993
    Co-Authors: M Nakatsuka, L C Gehr, F L Glauser
    Abstract:

    The effects of amrinone and CaCl2 on pulmonary vasculature and biventricular function in sheep with acute lung injury (ALI) were studied. Seven sheep were ventilated with a tidal volume of 10-12 ml.kg-1 with end-tidal CO2 of 40 +/- 5 mmHg (5.3 +/- 0.7 kPa) after acute lung injury was induced with up to 30 mg kg-1 of Ethchlorvynol (ECV). Biventricular function and hemodynamic profiles were estimated with a rapid computerized thermodilution method and modified pulmonary artery catheters after acute lung injury, following a loading dose (1 mg kg-1) and maintenance dose (5 micrograms kg-1 min-1) of amrinone and after a bolus dose of CaCl2 (20 mg kg-1). ECV successfully induced acute lung damage in sheep, causing significant increases in pulmonary artery pressure (PAP) and pulmonary vascular resistance index (PVRI). Amrinone reversed the unfavorable changes induced by ECV, significantly reducing PAP, PVRI and left ventricular end-diastolic volume (LVEDV). CaCl2, however, reversed the effect of amrinone and increased PAP, PVRI, and LVEDV but decreased left ventricular ejection fraction.

T E Dahms - One of the best experts on this subject based on the ideXlab platform.

  • ibuprofen reduces Ethchlorvynol lung injury possible role of blood flow distribution
    Journal of Applied Physiology, 1992
    Co-Authors: K Yagi, L J Baudendistel, T E Dahms
    Abstract:

    The role of cyclooxygenase products in acute lung injury was determined by pretreatment of dogs with ibuprofen before injury with intravenous ethchlovynol (ECV). In animals given ECV only, lung injury resulted in extravascular lung water of 18.9 ml/kg after 2 h, which was significantly higher than the 14.8 ml/kg in the group pretreated with ibuprofen. The comparison of gravimetric and indicator-dilution measurements of edema fluid indicates that edema fluid could not be reliably detected after treatment with ibuprofen because of diversion of flow from injured areas. Venous admixture increased from 6% at baseline to 32% 120 min after ECV in the vehicle-pretreated group compared with an increase from 4% at baseline to 7% in the ibuprofen-pretreated group. The regression analysis of the relationship between venous admixture and extravascular lung water indicated that, at any level of edema, venous admixture was significantly less in the group treated with ibuprofen than in the untreated group. Measurement of plasma and bronchoalveolar lavage fluid indicated that ibuprofen inhibited cyclooxygenase activity without affecting lipoxygenase activity. These results suggest that in intact dogs ibuprofen has a protective effect on both pulmonary gas transfer and pulmonary edema formation in ECV-injured lungs, which is consistent with limiting blood flow to injured segments of the lung.

B Frederic J R Westervelt - One of the best experts on this subject based on the ideXlab platform.

M Nakatsuka - One of the best experts on this subject based on the ideXlab platform.

  • the effects of amrinone and calcium chloride on pulmonary vasculature and biventricular function in Ethchlorvynol induced lung injury in sheep
    Acta Anaesthesiologica Scandinavica, 1993
    Co-Authors: M Nakatsuka, L C Gehr, F L Glauser
    Abstract:

    The effects of amrinone and CaCl2 on pulmonary vasculature and biventricular function in sheep with acute lung injury (ALI) were studied. Seven sheep were ventilated with a tidal volume of 10-12 ml.kg-1 with end-tidal CO2 of 40 +/- 5 mmHg (5.3 +/- 0.7 kPa) after acute lung injury was induced with up to 30 mg kg-1 of Ethchlorvynol (ECV). Biventricular function and hemodynamic profiles were estimated with a rapid computerized thermodilution method and modified pulmonary artery catheters after acute lung injury, following a loading dose (1 mg kg-1) and maintenance dose (5 micrograms kg-1 min-1) of amrinone and after a bolus dose of CaCl2 (20 mg kg-1). ECV successfully induced acute lung damage in sheep, causing significant increases in pulmonary artery pressure (PAP) and pulmonary vascular resistance index (PVRI). Amrinone reversed the unfavorable changes induced by ECV, significantly reducing PAP, PVRI and left ventricular end-diastolic volume (LVEDV). CaCl2, however, reversed the effect of amrinone and increased PAP, PVRI, and LVEDV but decreased left ventricular ejection fraction.

Thomas E Dahms - One of the best experts on this subject based on the ideXlab platform.

  • cyclooxygenase inhibitors prevent Ethchlorvynol induced injury in rat and rabbit lungs
    Journal of Applied Physiology, 1991
    Co-Authors: P B Zanaboni, J D Bradley, Robert O Webster, Thomas E Dahms
    Abstract:

    The effect of three chemically dissimilar cyclooxygenase inhibitors on Ethchlorvynol-(ECV) induced acute lung injury was studied in isolated buffer-perfused rat and blood-perfused rabbit lungs. ECV caused the microvascular fluid filtration coefficient (Kf) to increase by greater than threefold in the rat lungs and twofold in the rabbit lungs. ECV caused increased pulmonary vascular resistance (PVR) and microvascular pressure measured by the double occlusion technique (Pdo) compared with the vehicle control group in the rat experiments. However, ECV had no effect on PVR or Pdo in the rabbit experiments. Pretreatment with the cyclooxygenase inhibitors indomethacin, ibuprofen, and meclofenamate prevented the increase in microvascular permeability in both the rat and rabbit lung preparations. The cyclooxygenase inhibitors also prevented the ECV-induced PVR and Pdo increases in the rat lungs but had no effect on PVR or Pdo in the rabbit lungs. These results indicate that cyclooxygenase products of arachidonate metabolism mediate the ECV-induced Kf increase in both isolated rat and rabbit lungs.