An exercise metabolism chamber for mice
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Engineering topics
Publications and source records attributed to Weiss, H. S..
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The purpose of this project was to design a long-term environmental exposure chamber for small animals. This chamber is capable of producing hypoxic, normoxic and hyperoxic atmospheres which are closely regulated. The chamber, which is of the recycling type, is fashioned after clear plastic germ-free isolators. Oxygen concentration is set and controlled by a paramagnetic O2 analyzer and a 3-way solenoid valve. In this way either O2 or N2 may be provided to the system by way of negative O2 feedback. Relative humidity is maintained at 40-50 percent by a refrigeration type dryer. Carbon dioxide is absorbed by indicating soda lime. A diaphragm pump continuously circulates chamber gas at a high enough flow rate to prevent buildup of CO2 and humidity. This chamber has been used for numerous studies which involve prolonged exposure of small animals to various O2 concentrations.
Mice infected by intraperitoneal injection of Diplococcus pneumoniae were held at 1 atm in either hypoxic (12%), hyperoxic (75%), or a normal (21%) oxygen environment. Mortality rates indicated prolongation of survival in hypoxia and shortened survival in hyperoxia. Exposure of mice to the experimental gas mixtures prior to inoculation did not alter the results.
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It had been found in previous investigations that hatchability of fertile chicken eggs is reduced to 50% or less of controls if incubation takes place in a low nitrogen atmosphere containing He. Although these results suggest some role for nitrogen in embryogenesis, it is possible that a requirement exists for an inert molecule closer in physical characteristics to nitrogen than is He. An investigation is conducted involving incubation at ground level pressure in a gas mixture in which the 79% inert component was either neon or argon. The effect of varying combinations of nitrogen, helium, and oxygen was also studied.
Fertile chicken eggs were incubated in an altitude chamber in a near 100% O2 atmosphere at 225 torr. Both N2 and CO2 were kept under 0.5%. Temperature was a standard 37.5 C but a high relative humidity of 90% was required to prevent dehydration. In ten trials involving 382 eggs, hatchability averaged 21% of controls and weight of chicks was 11% less than controls, but embryo mortality was distributed similarly. Low pressure per se and small differences in O2 tension may have affected the results, but similarities to incubation in 21% O2-79% He call attention to absence of nitrogen as a possible explanation.
Lung weights of rats exposed to hyperoxic gas mixtures with He or no inert gas diluents substituting N2
Hyperoxia and pulmonary surfactant washout in pulmonary compliance measurements of rats subjected to 100 percent diatomic oxygen before asphyxic death
Air and saline P-V curves of rat lungs after hyperoxia, comparing hyperoxia effects to surfactant washout on pulmonary compliance
Hyperoxia compared to surfactant washout on pulmonary compliance in rats
Rodents exposure to neon enriched atmosphere for three weeks in sealed recycling system, discussing body weight pregnancies and litter
Food intake and oxygen toxicity in quail, cortrunix japonica
Sealed environmental factors in adverse effects of helium on embryonic development in chickens
Force feeding effect on response of Japanese quail to oxygen toxicity, discussing body weight, digestive processes and mortality rates
Rats metabolic and thermal responses to helium- oxygen environment at ambient temperatures indicate little adaptive response
Multiplace metabolimeter closed circuit system with servo-driven volume meter for animal oxygen consumption in gaseous artificial environments
Metabolic depression in animals exposed to air after living in helium-oxygen environment, suggesting denitrogenation period effect
Thermal responses of man during rest and exercise in helium oxygen environment for various temperatures