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Biomedical subjects

R E Tuck

Publications and source records attributed to R E Tuck.

4 recordsLinked to original sources

The synergistic activity of tiamulin and chlortetracycline: in-feed treatment of bacterially complicated enzootic pneumonia in fattening pigs.

The antibacterial effects of a combination of tiamulin and chlortetracycline in vitro against a number of field isolates of Pasteurella multocida, Haemophilus pleuropneumoniae and Bordetella bronchiseptica were examined. There was a marked synergism between the two antibiotics against all eight isolates of P multocida, against seven of nine isolates of H pleuropneumoniae and against the single strain of B bronchiseptica tested. Two field trials were carried out on a herd with a history of complicated enzootic pneumonia where the presence of Mycoplasma hyopneumoniae and P multocida had been established and subsequently the presence of H pleuropneumoniae was discovered. Feed containing tiamulin at 100 ppm combined with chlortetracycline at 300 ppm was given for seven days to pigs affected with pneumonia, and the results were compared with untreated controls and pigs receiving chlortetracycline at 300 ppm. There was a follow-up observation period of three weeks when all groups received unmedicated feed. During the medication period the combination treated groups showed a statistically significant increase in average daily weight gain of 156 g (20.4 per cent) and in feed conversion efficiency of 0.576 (20.8 per cent) and a numerical improvement in average disease score in comparison with the untreated controls. These improvements were approximately double those observed in the groups treated with 300 ppm chlortetracycline which showed improvements of 93 g (12.2 per cent) in average daily gain and 0.301 (10.9 per cent) in feed conversion efficiency. During the following three weeks most of the initial gains were lost, probably owing to the reinfection of the treated groups by the untreated controls.

Animal Feed↗

Serial determination of lung volume in small animals by nitrogen washout.

This report describes the design of an apparatus and the procedures used to serially measure the total lung capacity and the functional residual capacity of small animals utilizing the N2-washout technique. The calibration data indicate that the technique is accurate to within 1 ml and has a variance of less than 5%. The in vivo lung volume measurements of rats were validated by comparing them with values obtained with a water-displacement technique; the means were within 0.3 ml. Examples of the precision and changes in lung volume of animals during studies are included to demonstrate the reliability and usefulness of the technique.

Animals↗

Maturation of eupneic respiration in the neonatal monkey.

Comparison between 21 2-day-old infant monkeys and 17 21-day-old infants during non-rapid eye movement sleep demonstrated that minute ventilation (VI) increased from 141 +/- 30 to 257 +/- 65 ml/min secondary to elevations in tidal volume (VT) and mean inspiratory flow (VT/Ti) with little change in respiratory timing. These volumetric parameters of ventilation as well as functional residual capacity remained significantly augmented when standardized for gain in body weight. Dynamic lung compliance increased from 0.69 +/- 0.19 to 0.89 +/- 0.39 ml/cm H2O with age while inspiratory pulmonary resistance did not change. Effective elastance fell significantly with maturation (5.27 +/- 1.51 cm H2O/ml on day 2 versus 4.15 +/- 1.35 cm H2O/ml on day 21) while effective impedance was elevated postnatally. The postnatal ventilatory gain (80% increase in VI) was attributable to increases both in dynamic lung compliance (30%) and inspiratory effort (50%) as determined by esophageal pressure changes. Isometric occlusion pressures (P0.1, P0.2 . . . Pmax) also significantly increased during this time span, suggesting that the increased ventilation resulted from an elevated respiratory drive.

Aging↗

An elastic loading system for ventilatory studies in small animals.

A system for studying the effects of prolonged inspiratory elastic loading in small animals (300-500 g) is described. A voltage comparator triggered by the expired flow signal activates a solenoid valve to vent the loading chamber after each inspiratory decompression, ensuring the presentation of a constant extrapulmonary elastance. The sensitivity of the comparator (5 mV) and the response time of the venting circuit (40 ms) make this system suitable for use in small subjects with tidal volumes less than 1 ml and respiratory frequencies exceeding 100 breaths . min-1. Additionally, the composition of the inspiratory gas is easily altered and a built-in device allows end-expiratory occlusions to be performed.

Animals↗