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Biomedical subjects

C F Pilati

Publications and source records attributed to C F Pilati.

22 records · Page 2Linked to original sources

Pulmonary hemodynamics and lung water content during splanchnic ischemic shock.

Pulmonary hemodynamics and lung water content were evaluated in open-chest dogs during splanchnic arterial occlusion (SAO) shock. Mean pulmonary arterial pressure [Ppa = 13.0 +/- 0.6 (SE) mmHg] and pulmonary venous pressure (4.1 +/- 0.2 mmHg) were measured by direct cannulation and the capillary pressure (Ppc = 9.0 +/- 0.6 mmHg) estimated by the double-occlusion technique. SAO shock did not produce a significant change in Ppa or Ppc despite a 90% decrease in cardiac output. An 18-fold increase in pulmonary vascular resistance occurred, and most of this increase (70%) was on the venous side of the circulation. No differences in lung water content between shocked and sham-operated dogs were observed. The effect of SAO shock was further evaluated in the isolated canine left lower lobe (LLL) perfused at constant flow and outflow pressure. The addition of venous blood from shock dogs to the LLL perfusion circuit caused a transient (10-15 min) increase in LLL arterial pressure (51%) that could be reversed rapidly with papaverine. In this preparation, shock blood produced either a predominantly arterioconstriction or a predominantly venoconstriction. These results indicate that both arterial and venous vasoactive agents are released during SAO shock. The consistently observed venoconstriction in the intact shocked lung suggests that other factors, in addition to circulating vasoactive agents, contribute to the pulmonary hemodynamic response of the open-chest shocked dog.

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Effect of histamine on coronary microvascular permeability.

The effect of histamine on coronary vascular permeability was assessed under conditions of elevated venous pressure in the spontaneously beating, isolated canine heart perfused with autologous blood. The apparent volume of fluid filtered from the vasculature to the interstitium (VF) was calculated from the increase in plasma protein concentration and also from the increase in hematocrit. The ratio of the protein-filtered volume to the hematocrit-filtered volume (VF,Pr/VF,Hct) was used to evaluate changes in permeability. In the absence of histamine, the VF,Pr/VF,Hct was near unity (1.05 +/- 0.11), which indicated that the blood proteins and the red blood cells had concentrated equally. Thus the transudate was essentially protein free. On exposure to histamine (3.8 +/- 0.3 microgram base/ml blood), VF,Pr/VF,Hct decreased to 0.37 +/- 0.06 (P less than 0.001), which indicated that coronary vascular permeability had increased. This value remained constant throughout the 60 min of histamine exposure. Aortic perfusion pressure decreased significantly (P less than 0.05) from 111 +/- 11 to 84 +/- 5 mmHg during the 1st min of histamine exposure and rose slowly thereafter. In four of the seven hearts, concomitant increases in left ventricular isovolumic pressure development (13-31 mmHg) and heart rate (4-29 beats/min) were observed. In the remaining hearts, neither variable was affected by histamine. We conclude that histamine causes an increase in the permeability of the canine coronary microvasculature but fails to increase heart rate or left ventricular performance consistently.

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Ouabain-induced mechanical toxicity: aberrations in left ventricular function, calcium concentration, and ultrastructure.

The isolated rabbit heart was employed to determine if the myocardial mechanical dysfunction (mechanical toxicity) produced by digitalis was accompanied by ultrastructural lesions and an excessive accumulation of calcium by the cardiac cell. Ouabain (1.2 or 2.4 microM) produced a transient increase and then a continuous decrease in the systolic pressure development by the isovolumic left ventricle. The end-diastolic pressure increased progressively during the time that the systolic pressure was diminishing. The ultrastructural abnormalities that were observed in the ouabain-treated hearts included swollen mitochondria, hypercontracted sarcomeres and, occasionally, myofibrillar disruption. The left ventricular cellular calcium concentration was increased (P less than 0.05) in these mechanically toxic hearts and this increase correlated significantly (r = 0.65, P less than 0.05) with the magnitude of the increase in end-diastolic pressure. Furthermore, a reduction in the perfusate calcium concentration did not attenuate the ouabain-stimulated uptake of calcium. The data suggest that the impaired mechanical performance and the ultrastructural aberrations that may develop in the digitalis-treated heart are related to an excessive uptake of calcium by the left ventricle.

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