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D B Rayburn

Publications and source records attributed to D B Rayburn.

3 recordsLinked to original sources

Effects of repetitive bolus injections of zymosan-activated plasma on lung mechanics and airway responsiveness in awake sheep.

We studied the pulmonary effects of repetitive bolus injections of autologous zymosan-activated plasma (ZAP) in nine chronically instrumented awake sheep. Aerosol histamine responsiveness was determined 1 h before and 4.5 h after the first bolus injection of ZAP. Each sheep received in the pulmonary artery a total of eight 5-ml bolus injections of ZAP separated by 30 min. On a separate day, with the order of experimentation varied to avoid sequential bias, six of the nine sheep also received "control" plasma (plasma prepared in the identical fashion as ZAP but not incubated with zymosan). "Control" plasma caused reproducible transient increases in pulmonary artery pressure, but it did not cause alterations in any of the other measured variables. Repetitive bolus injections of ZAP caused reproducible alterations in lung mechanics, pulmonary hemodynamics, lung fluid and solute exchange, oxygenation, and peripheral leukocyte counts. The increases in thromboxane-B2 concentrations in lung lymph and plasma were greatest after the first bolus injection of ZAP, with the magnitude of these changes diminishing on succeeding injections of ZAP. Aerosol histamine responsiveness did not increase after the eight bolus injections of ZAP.

6-Ketoprostaglandin F1 alpha

Effects of conditioning and maximal incremental exercise on oxygen consumption in sheep.

To assess the suitability of sheep for exercise studies, the effect of incremental exercise and conditioning on oxygen consumption (VO2) was studied. Six sheep were adapted to a treadmill and subsequently trained 8 weeks. The sheep were then studied, in random order, using 3 incremental exercise protocols (EX-1, EX-2, and EX-3). The protocols were chosen to approximate high (EX-1), moderate (EX-2), and low (EX-3) intensity exercise by varying treadmill speed and incline. The sheep were then conditioned for an additional 12 weeks and retested on the EX-2 protocol. During exercise, VO2, gas exchange ratio (R), and rectal temperatures (Tb) were recorded. All 3 protocols resulted in significant increases in VO2, R, and Tb (P less than 0.05). Maximum VO2 for EX-1, 49.9 +/- 5.0 ml/min/kg of body weight, was significantly greater than maximum VO2 for EX-2 and EX-3, 37.8 +/- 6.5 and 42.3 +/- 6.0 ml/min/kg, respectively (P less than 0.05), whereas maximum R and maximum Tb were similar. After the additional 12-week conditioning, time on the treadmill increased 40% from 9.58 +/- 0.87 to 13.4 +/- 0.44 minutes, and maximum VO2 increased 27% to 48.1 +/- 9.1 ml/min/kg. These data indicated that maximum VO2 varied with intensity of the exercise, 12 weeks of maximal exercise conditioning was sufficient to produce a measurable training effect (ie, increase endurance and maximum oxygen consumption) and sheep are suitable for maximal exercise studies where VO2 measurements are desired.

Animals

Computer-controlled large-animal pulmonary function system.

Breath by breath determination of lung volume and specific lung conductance is challenging, yet desirable particularly when rapid changes in lung function accompany abrupt changes in lung volume. We have developed a large-animal pulmonary function data acquisition system using two personal computers with custom-made software which continuously tracks breath by breath changes in pulmonary function and lung volume. Accurate measurement of respiratory flow signals is accomplished by collecting separate pneumotachometer-derived expiratory and inspiratory flow signals, correcting them to standard temperature pressure dry (STPD) and summing them into a single flow data array. Calibration of inspiratory and expiratory flow is software corrected by comparison of the integrated flow signals with a sinusoidal pump system. Data are collected continuously for up to 120 min at 100 Hz/channel. Subroutines which configure the system to perform functional residual capacity, dosimetry and partial expiratory flow-volume maneuvers are user selected at any time during data collection.

Animals