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J C Kay

Publications and source records attributed to J C Kay.

12 recordsLinked to original sources

Prostanoid production and pulmonary hypertension after fat embolism are not modified by methylprednisolone.

Bilateral cemented arthroplasty (BCA) in anaesthetized mongrel dogs produces particulate fat and marrow embolism of the lung. Methylprednisolone sodium succinate (MPSS) has been advocated for post-traumatic fat embolism to prevent acute lung injury. We used the BCA procedure to produce acute fat and marrow embolism, and tested the efficacy of MPSS (30 mg.kg-1) in preventing physiological and pathological markers of acute lung injury. Dogs (n = 6) pre-treated with MPSS demonstrated similar acute increases in pulmonary artery pressure (PAP) within one minute of BCA (17.8 +/- 7.3 mmHg) as the untreated (control n = 7) dogs (18.6 +/- 12.6). Pulmonary vascular resistance (PVR) increased to the same degree in both groups (455 +/- 323 and 319 +/- 137 dyne.sec.cm-5) and PaO2 decreased by 18.3 +/- 6.4 mmHg in the control group as opposed to 12.4 +/- 7.7 mmHg in the MPSS group within five minutes of BCA. Circulating arterial and mixed venous plasma concentrations of thromboxane B2 (TxB2) increased within one minute of BCA in both groups with no increase in the transpulmonary gradient. Arterial plasma 6-keto prostaglandin F1 alpha (6-keto PGF1 alpha) increased (0.91 +/- 0.29 ng.ml-1 and 0.87 +/- 0.43 ng.ml-1) in both groups one minute after BCA. Mixed venous 6-keto PGF1 alpha plasma concentration also increased, but a significant transpulmonary 6-keto PGF1 alpha gradient was found.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha

Capnography is not as sensitive as pulmonary artery pressure monitoring in detecting marrow microembolism. Studies in a canine model.

We studied several methods for detecting pulmonary embolic events in a model of fat and marrow microembolism during canine cemented arthroplasty procedures. The cardiopulmonary effects of bilateral cemented arthroplasty in this model include increased pulmonary artery pressure and pulmonary vascular resistance accompanying a decrease in arterial oxygen tension. We documented significant fat and marrow microembolism by postmortem quantitative morphometry of lung sections. Vessels occluded ranged in diameter from 0.5 to 190 microns. The acute increases in pulmonary artery pressure (PAP) (to 26.8 +/- 4.4 mm Hg from 15.3 +/- 3.3 mm Hg) after cemented arthroplasty were not detected by changes in continuously monitored end-tidal CO2 or in right atrial or arterial blood pressures. Although capnography is a useful intra-operative monitor, in this model it is less sensitive than PAP monitoring in detection of fat and marrow microemboli.

Animals

High-volume, high-pressure pulsatile lavage during cemented arthroplasty.

To determine the efficacy of high-volume, high-pressure pulsatile lavage in the prevention of cardiopulmonary dysfunction and fat embolism during cemented arthroplasty, we studied twenty-eight mongrel dogs that had had a bilateral cemented arthroplasty. Significant increases in pulmonary-artery pressure and pulmonary vascular resistance, accompanied by decreases in arterial oxygen tension and increases in intrapulmonary shunt fraction (Qs/Qt), characterized cardiopulmonary dysfunction after bilateral cemented arthroplasty when no lavage was used. Low-volume, low-pressure manual lavage did not significantly alter these physiological changes, but there was a significant reduction in the number of fat emboli that were demonstrated in the lungs as compared with the no-lavage group. High-volume, high-pressure pulsatile lavage of the intramedullary cavity after reaming significantly reduced the changes in pulmonary-artery pressure, pulmonary vascular resistance, arterial oxygen tension, and intrapulmonary shunt fraction (Qs/Qt). In the pulsatile-lavage group, the number of fat microemboli that were found in the lungs was reduced to 25.7 per cent of those found in the no-lavage group. We concluded that meticulous high-volume, high-pressure pulsatile lavage reduces both pulmonary physiological derangements and fat emboli during bilateral cemented arthroplasty in dogs.

Animals

Effects of emboli, positive-pressure ventilation, and airway water on lung water measurements.

We tested the effects of microemboli, continuous positive-pressure ventilation (CPPV), and aspirated airway water on measurements of extravascular lung water by use of the technique of thermal indicator dilution (ETVL). A control group of dogs and a group of dogs in which dextran was infused created all levels of pulmonary edema. In an emboli group 0.125 g/kg of starch microemboli (63-74 micron diam) were infused. In groups with emboli and CPPV, starch emboli were infused and CPPV was then applied at 15 cmH2O. In an airway saline group measured amounts of saline were poured into the airway. In all groups postmortem pulmonary extravascular tissue weight (PETW) was determined and compared with the last ETVL. Emboli created an increased scatter when the last ETVL is compared with PETW because 1) blood trapped distal to emboli was included in the ETVL measurement, and/or 2) diffusion limitations for the thermal indicator were exceeded. Emboli and CPPV decreased ETVL/PETW. Airway saline (80 +/- 5%) was measured by ETVL. In conclusion, the ETVL technique is reliable in well-perfused lungs but loses accuracy in measuring lung water after emboli of any size or with large amounts of airway fluid.

Algorithms

Pulmonary marrow embolism: a dog model simulating dual component cemented arthroplasty.

The cardiopulmonary changes resulting from cemented arthroplasty procedures were monitored in 11 dogs with a single prosthesis implanted and nine dogs with a dual arthroplasty procedure. These changes were characterized by decreased BP, elevated PPA, and elevated PVR, associated with decreases in PaO2, cardiac output and mixed venous oxygen tension. All changes were more pronounced and prolonged in the dual component arthroplasty group. Histologic lung examination and morphometry demonstrated significant degrees of marrow (fat) microembolism in the dual arthroplasty model. Cardiopulmonary collapse has been associated with Guepar dual component arthroplasties clinically and these patients are at increased risk and should be monitored continuously. Prophylactic measures include meticulous lavage of the intramedullary cavity, increased FIO2, and maintenance of intravascular volume and cardiac output. The bilateral arthroplasty model is useful in investigating therapeutic interventions which may detect and prevent the marrow microembolism syndrome intraoperatively.

Animals

Cardiopulmonary function and pulmonary microemboli during arthroplasty using cemented or non-cemented components. The role of intramedullary pressure.

An experimental model was designed to investigate the role of intramedullary pressure on cardiopulmonary function and pulmonary pathology during arthroplasty using cemented and non-cemented components. Twenty-four dogs were divided randomly into three groups: a group that received a non-cemented implant in which low intramedullary pressure was generated, a group that received a cemented implant, and one that received bone wax and an implant; high intramedullary pressures were generated in the latter two groups. Bone wax was used to generate high intramedullary pressures without the use of bone cement. In the group with the non-cemented implant, few pulmonary microemboli and no significant cardiorespiratory changes were found. In the groups that received bone wax and an implant or the cemented implant, there were many pulmonary microemboli and significant cardiorespiratory changes, including decreased arterial oxygen tension, increased pulmonary arterial pressure, and increased intrapulmonary shunt fraction. There was no evidence that methylmethacrylate monomer was responsible for the cardiorespiratory changes in the group with the cemented implant.

Animals

The effects of dobutamine, nitroprusside, or volume expansion on cardiac output and lung water after CPPV.

Pulmonary microemboli can create an ARDS-like state in dogs (high pulmonary vascular resistance, pulmonary oedema and arterial hypoxemia). CPPV can correct the hypoxemia of pulmonary microemboli but reduces cardiac output (Q) and tissue oxygenation. This paper compares the effect of improving Q by infusing volume, reducing afterload, or increasing myocardial contractility. Four groups of seven dogs were studied. All had 0.125 g . kg-1 of starch microemboli (63-74 microns) infused and then CPPV at 15 cm H2O applied. The control group had no further treatment applied. In three other groups volume (dextran) or dobutamine or nitroprusside (NTP) was infused to return Q to the level before CPPV was applied. All treatments (volume, dobutamine and NTP) improved Q and O2 transport. Only the volume group had a significant increase in pulmonary microvascular pressure, Pmv = PLA + 0.4 (PPA - PLA) from 2.53 +/- 0.27 to 3.35 +/- 0.13 kPa, p less than 0.05. Only the volume group demonstrated a significant increase in lung water above (double) the control group as measured by a double indicator dilution technique (ETVL) and post mortem lung weights. We conclude volume infusions to improve a CPPV depressed Q may increase lung water and that better treatment would be to infuse NTP or dobutamine, thus maintaining a lower Pmv and therefore lung water. As a corollary the least CPPV should be applied to maintain adequate oxygenation and create the least need for interventions to improve Q.

Animals

The linear relation of cerebral blood flow to arterial oxygen saturation in hypoxic hypoxia induced with nitrous oxide or nitrogen.

This study has demonstrated a linear relationship between cerebral blood flow and arterial oxygen saturation (Sao2) in the cerebral blood flow response in the hypoxic range of Pao2 values, which we believe is documented for the first time. The cerebral blood flow increased 1.02 per cent for each percentage decrease in Sao2 in hypoxia induced with nitrogen. Hypoxia induced with nitrous oxide increased cerebral blood flow at the rate of 2.09 per cent for each one per cent decrease in Sao2 which was dramatically more than the increase associated with hypoxia induced with nitrogen. Increased survival rates at lower Sao2 levels suggested that nitrous oxide also exerts a protective effect on dog myocardium. The mechanism by which hypoxia increases cerebral blood flow is unclear but the prevalent theory is one of neurogenic control which causes cerebral blood flow to increase as the intracellular hydrogen ion ([H+]I) increases in the progressive lactacidosis of hypoxia. The demonstration of a linear relationship between cerebral blood flow and Sao2 will provide the statistician, the researcher and the clinician with a useful tool for the neurophysiological assessment of cerebral blood flow.

Animals

The effects of continuous positive pressure ventilation on pulmonary oedema, gas exchange and lung mechanics.

The effect of continuous positive pressure ventilation was studied in 23 dogs in whom pulmonary oedema was induced by rapid intravenous infusion of dextran 40. CPPV slowed but did not prevent the formation of oedema. CPPV prevented or reversed the formation of liver-like areas in the dependent lobes, maintaining the oedematous lung compliant and aerated. This led to a reduction of shunt and an increase in PaO2. The use of CPPV decreased cardiac output and body oxygen consumption. Mixed venous oxygen tension was higher in dogs ventilated by CPPV and these dogs tolerated fulminant frothy oedema without distress.

Animals

Lung mechanics in hypervolemic pulmonary edema.

Extravascular thermal volume of the lung (ETVL) is a double indicator dilution technique of use in measuring pulmonary edema. ETVL and lung mechanics measurements were followed to find a less invasive monitor of pulmonary edema than the double indicator dilution technique. Pulmonary edema was induced by overloading the dogs' circulation with dextran. Phases of overload were defined on the basis of a previous electron microscopic study (Noble et al., Can. Anesthetists Soc. J. 21:275, 1974) of lung biopsies relating anatomic changes to physiologic measurements of ETVL and central blood volume (CBV). Congestion occurred when CBV was elevated and ETVL was not, interstitial edema when ETVL was elevated but smaller than 60% above control and alveolar edema when ETVL greater than 85% above control. Once the dogs were in alveolar edema, they were mechanically ventilated with 4, 8, 12, and 16 cmH2O end-tidal pressure (CPPV). Mean functional residual capacity (FRC) for all 15 dogs did not change up to the time CPPV was applied. Pulmonary resistance did not rise until alveolar edema was present. Once in pulmonary edema, lung compliance always fell as lung water increased. In individual dogs, the compliance fall was directly proportional to the rising lung water. However, the variations in slope and beginning point among dogs made it difficult to predict the amount of lung water from dynamic compliance values. PaO2 fell markedly in alveolar edema as a result of a widened A-a gradient. CPPV did not decrease lung water but did increase FRC and PaO2.

Animals